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|
 |
R – Invited Review O – Oral P – Poster C –
Round Table
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Session 1:
Asteroids, Comets, Meteors, and TNOs: Small Bodies of the Solar System
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R1.1
|
Chapman,
C.R
|
Physical Properties of Small
Bodies from Atens to TNO´s
|
|
R1.2
|
Papaloizou,
J.
|
Origin and evolution of planetary
system and the role of minor bodies
|
|
O1.1
|
Bottke,
W.F. et al.
|
Iron Meteorites: Remants of Planetesimals
Formed Inside 2 AU
|
|
O1.2
|
Williams,
I.P. et al.
|
The Kappa Cygnid meteor shower and
its Family
|
|
O1.3
|
Morbidelli, A. et al.
|
The chaotic capture of Jupiter
Trojans during the late heavy bobardment
|
|
O1.4
|
Emel´yanenko,
V.
|
Structure and dynamics of the
Centaur population: constraints on the origin of short-period comets
|
|
P1.1
|
Busarev,
V.V.
|
Spectral features of some asteroids
as insights into the history of our planetary system
|
|
P1.2
|
Cabral, R.N. et al.
|
Symplectic Mappings for extrasolar
systens
|
|
P1.3
|
Chavero, C. et al.
|
Polarimetry of extrasolar Kuiper
belt candidate stars
|
|
P1.4
|
de la Reza, R.
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On Metallic Enrichment of Stars
with Planets
|
|
P1.5
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dos Santos, M.T. et al.
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Possible Effects of the Planetary
Migration on the Satellites
|
|
P1.6
|
Horner,
J. et al.
|
Cometary D:H ratios and the
formation of the Solar System
|
|
P1.7
|
Ito, T. et al.
|
The Origin of Planetary Impactors
in the Inner Solar System
|
|
P1.8
|
Mousis,
O. et al.
|
Estimating the icy content of
asteroid (1) Ceres
|
|
P1.9
|
Parisi,
M.G.
|
A shock Wave Model for the
formation of Chondrule Precursor Grains
|
|
P1.10
|
Parley, N.R. et al.
|
Serendipitous Asteroid lightcurve
survey using SuperWASP
|
|
P1.11
|
Simakov,
M.
|
Chemical evolution on small bodies
in Solar systems
|
|
P1.12
|
Vilhena
de Moraes, R. et al.
|
On the scattering of planetesimals
by a planet
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|
Session 2:
Deep Impact: the Experiment and its First Results
|
|
R2.1
|
A’Hearn,
M.F. et al.
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Deep Impact: the Experiment
|
|
O2.1
|
Schultz, P.H. et al.
|
Nature of Comet 9/P Temple 1 from
the Deep Impact Cratering Extperiment
|
|
O2.2
|
Sunshine,
J.M. et al.
|
The Nucleus of Comet 9/P Tempel 1:
Before, During, and After the Deep Impact Cratering Experiment
|
|
O2.3
|
Groussin,
O. et al.
|
Temperature map of the nucleus of
comet 9P/Tempel 1 from the Deep Impact mission
|
|
O2.4
|
Meech,
K. et al.
|
The Deep Impact Earth-Based
Observing Program
|
|
O2.5
|
Lisse,
C. et al.
|
The Coma of Comet 9P/Tempel 1 –
First Results From the Deep Impact Mission
|
|
O2.6
|
Keller, H.U. et al.
|
Deep Impact observations by the
scientific imaging system OSIRIS of the Rosetta mission
|
|
P2.1
|
Bensch,
F. et al.
|
SWAS observations of comet 9P (Tempel
1) and Deep Impact
|
|
P2.2
|
Biver, N. et al.
|
Radio observations of comet
9P/Tempel 1 before and after Deep Impact
|
|
P2.3
|
Boehnhardt,
H. et al.
|
The Deep Impact Campaign at ESO:
Dust and Nucleus Characterization
|
|
P2.4
|
Buie,
M.W. et al.
|
Optical/Near-IR Deep Impact
Observations from Lowell Observatory
|
|
P2.5
|
Capria, M.T. et al.
|
Observation Campaign in Support of
Deep Impact ay TNG in La Palma
|
|
P2.6
|
de Almeida, A.A. et al.
|
On continuum microwave radiation
from Comet 9P/Tempel 1 in the Deep Impact
|
|
P2.7
|
de Almeida, A.A. et al.
|
Atomic and new molecular emission
lines observed in the spectrum of Comet 9P/Tempel 1 generated by the deep
impact
|
|
P2.8
|
De Buizer, J. et al.
|
The LCO/Gemini-South campaign for
Deep Impact target comet 9P/Tempel 1: Thermal infrared spectroscopy pre- and
post-impact.
|
|
P2.9
|
Delamere, A. et al.
|
The Deep Impact Mission: overview
of the instrumentation
|
|
P2.10
|
Fernandez, Y.R. et al.
|
NASA/IRTF Observations of Comet
9P/Tempel 1 Before, During, and After the Deep Impact Encounter
|
|
P2.11
|
Ipatov,
S.I. et al.
|
Automatic recognition of cosmic
rays at Deep Impact CCDs
|
|
P2.12
|
Kaeufl, H.U. et al.
|
DEEP IMPACT at Comet 9P/Tempel 1:
Mid-Infrared Observations
|
|
P2.13
|
Kaeufl, H.U. et al.
|
Pre-impact mid-IR and optical
observations of comet 9P/Tempel1
|
|
P2.14
|
Klumov,
B. et al.
|
Deep Impact: numerical modeling of
impact-induced fireball plasmachemistry
|
|
P2.15
|
Lara, L.-M. et al.
|
Monitoring of the Deep Impact
target from Calar Alto Observatory
|
|
P2.16
|
Lederer,
S.M. et al.
|
The LCO/Gemini-South campaign for
Deep Impact target comet 9P/Tempel 1: Temporally resolved wide-field
narrowband imaging results
|
|
P2.17
|
Licandro,
J. et al.
|
The Deep Impact experiment
observed from “El Roque de los Muchachos Observatory”: preliminary results.
|
|
P2.18
|
Lisse, C. et al.
|
Chandra Observations of the Deep
Impact Encounter with Comet 9P/Tempel 1
|
|
P2.19
|
Lovell,
A. et al.
|
Radio OH Observations of comet
9P/Tempel 1 before and after Deep Impact
|
|
P2.20
|
Mäkinen, J.T.T. et al.
|
SWAN observations of the Deep
Impact event
|
|
P2.21
|
Meech,
K.J. et al.
|
The Deep Impact Earth-Based
Observing Program
|
|
P2.22
|
Melosh,
J. et al.
|
Formation Mechanics of the Deep
Impact Crater
|
|
P2.23
|
Mousis,
O. et al.
|
Predictions for the Deep Impact
collision from cometary nuclei modelling
|
|
P2.24
|
Picazzio, E. et al.
|
Narrow-band Photometry and Optical
Spectroscopy of Comet 9P/Tempel 1 at Observatório do Pico dos Dias in Brazil
|
|
P2.25
|
Pittichova, J. et al.
|
Wide-Field Imaging of Comet
9P/Tempel 1 and Dust Evolution after the Deep Impact Encounter
|
|
P2.26
|
Rauer, H. et al.
|
The Deep Impact Campaign at ESO:
Observations of the Gas Component
|
|
P2.27
|
Sarid, G. et al.
|
Modeling the nucleus of
9P/Tempel1: Thermal evolution and activity of Deep Impact´s target
|
|
P2.28
|
Vaubaillon, J. et al.
|
Meteroid environment of Tempel 1
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|
P2.29
|
Wang,
X. et al.
|
CCD photometry of the Deep Impact
target comet 9P/Tempel 1 in Yunnan Observatory
|
|
P2.30
|
Watanabe, J. et al.
|
Dust Tail of Comet 9P/Tempel 1
after the Deep Impact: Prediction and Result
|
|
P2.31
|
Weiler,
M. et al.
|
Longterm Multicolour Broadband
Filter Imaging of Comet 9P/Tempel 1
|
|
P2.32
|
Wirth,
K.R. et al.
|
Deep Impact Observations From
Rosetta
|
|
P2.33
|
Wooden,
D.H. et al.
|
Keck+LWS Observations of the
Spatially-Resolved Coma Dust Emission from Comet 9P/Tempel 1 Pre-Impact
|
|
P2.34
|
Wooden,
D.H. et al.
|
Temporal Studies of Comet
9P/Tempel 1’s Coma Grain Size Distribution and Silicate Mineralogy Pre-, During-,
and for a month Post-Impact
|
|
P2.35
|
Woodney,
L.M. et al.
|
Millimeter-wave observations of
9P/Tempel 1 surrounding the Deep Impact event
|
|
Session 3:
Connections between Small Bodies
|
|
R3.1
|
Mann, I. et al.
|
Physical Properties of the Dust in
the Solar System and its Interrelation with Small Bodies
|
|
R3.2
|
Toth, I.
|
Connections between asteroids and cometary
nuclei - Interrelations according to the physical properties
|
|
O3.1
|
Campins, H. et al.
|
Surface Characteristics of
Comet-Asteroid Transition Objects 944 Hidalgo and 162P/Siding Spring (2004
TU12)
|
|
O3.2
|
Coradini, A. et al.
|
Is Phoebe a KBO?
|
|
O3.3
|
Thomas, C.A. et al.
|
An Investigation of
Asteroid-Meteorite Connections
|
|
O3.4
|
Vaubaillon, J. et al.
|
tau-Herculids meteor shower and
comet Schwassmann-Wachmann III
|
|
O3.5
|
Di Sisto, R.P. et al.
|
The Centaur population
|
|
P3.1
|
Abell, P. et al.
|
Detailed Spectroscopic
Investigation of Comet-Asteroid Transition Object 944 Hidalgo: Comparison
with Comets C/2001 OG108 and 2P/Encke
|
|
P3.2
|
Bonev, T. et al.
|
Dynamical modeling of the dust in
comet C/LINEAR (2000 WM1)
|
|
P3.3
|
Borovicka, J.
|
Spectral investigation of two asteroidal
fireballs
|
|
P3.4
|
Galád, A.
|
A small campaign in 2006 connected
with 73P
|
|
P3.5
|
Hadamcik, E. et al.
|
Light scattering by porous cometary
and asteroidal analogs with the PROGRA2 experiment
|
|
P3.6
|
Hilchenbach, M. et al.
|
Analysis of cometary dust grains:
A method for understanding the structure of comet nuclei?
|
|
P3.7
|
Ipatov, S.I. et al.
|
Migration of interplanetary dust
and small bodies
|
|
P3.8
|
Kalabanova, A. R. et al.
|
Probable linking small meteor
showers to the Geminids
|
|
P3.9
|
Lamy, P. et al.
|
The colors of cometary nuclei and
other primitive bodies
|
|
P3.10
|
Lasue, J. et al.
|
Core-mantle aggregate models of cometary
dust: comparison with light scattering and thermal emission observations
|
|
P3.11
|
Levasseur-Regourd, A.C. et al.
|
Physical properties of cometary, asteroidal
and interplanetary dust, as derived from light scattering observations and
simulations
|
|
P3.12
|
Lorenz-Martins, S.
|
Presolar grains and circumstellar
dust envelopes of late-type stars
|
|
P3.13
|
Petrova, E.
|
Light scattered by Solar System
bodies and the aggregate model of dust particles
|
|
P3.14
|
Popova, O. et al.
|
Very Low Strengths of
Interplanetary Meteoroids and Small Asteroids
|
|
P3.15
|
Shestopalov, D. et al.
|
Comparison of Spectral Properties
of D-asteroids and Interstellar dust
|
|
P3.16
|
Sosa, N. et al.
|
Dust Production in Comet
29P/Schwassmann-Wachmann 1
|
|
P3.17
|
Vaubaillon, J. et al.
|
Linking Geminid meteoroids with
3200 Phaethon: A numerical approach
|
|
Session 4:
Space Missions and Observations
|
|
R4.1
|
Russell, C. T. et al.
|
Dawn Mission to Minor Planets 1
Ceres and 4 Vesta: Status Report
|
|
R4.2
|
Coradini, M.
|
Rosetta and the ESA Strategy of
Exploration of Minor Bodies
|
|
R4.3
|
Fernandez, Y.R. et al.
|
Review of Spitzer Space Telescope
Observations of Small Bodies
|
|
O4.1
|
Boehnhardt, H. et al.
|
The Deep Impact Campaign at ESO:
Overview and Highlights
|
|
O4.2
|
Feldman, P.D. et al.
|
Hubble Space Telescope
Observations of Comet 9P/Tempel 1 During the Deep Impact Encounter
|
|
O4.3
|
Osip, D. et al.
|
The LCO/Gemini-South campaign for
Deep Impact target comet 9P/Tempel 1: Overview and Highlights
|
|
O4.4
|
Sasaki, S. et al.
|
In-situ exploration of the surface
of asteroid Itokawa by MINERVA engineering rover on board HAYABUSA
|
|
P4.1
|
Bhattacharya, B. et al.
|
NASA´s Spitzer Space Telescope: A
photometric study of targeted and serendipitous asteroids
|
|
P4.2
|
Biele, J. et al.
|
Science with PHILAE (Rosetta
Lander) and further in-situ missions to small bodies
|
|
P4.3
|
Coradini, A. et al.
|
VIR-The Dawn Mapping Spectrometer
|
|
P4.4
|
Coradini, A. et al.
|
MILLBILLILLIE: Reflectance
spectroscopy
|
|
P4.5
|
Fujiwara, A. et al.
|
Asteroid science by HAYABUSA
sample return mission
|
|
P4.6
|
Goesmann, F. et al.
|
Long-term in-situ monitoring of a cometary
nucleus; capabilities of the COSAC instrument onboard Philae
|
|
P4.7
|
Goldstein, R. et al.
|
A Study of Gas and Plasma
Production at Comet 67P/Churyumov-Gerasimenko at Rosetta Arrival at 4 AU
Solar Distance
|
|
P4.8
|
Green, S.F. et al.
|
Evidence for fragmentation in the
dust coma of comet 81P/Wild 2
|
|
P4.9
|
Hestroffer, D. et al.
|
Astrometry of asteroids with GAIA.
Simultaneous determination of the solar quadrupole J2 and the relativistic
PPN parameter beta
|
|
P4.10
|
Hilchenbach, M. et al.
|
Cometary dust grain in-situ
analysis: COSIMA, Rosetta and future prospects
|
|
P4.11
|
Hillier, J.K. et al.
|
The composition of dust in the
vicinity of Enceladus
|
|
P4.12
|
Kaasalainen, S. et al.
|
Ground reference for minor planet
remote sensing: laboratory photometry and lightcurve analysis of an asteroid
model
|
|
P4.13
|
Keller, H.U. et al.
|
Scientific investigation of 4 Vesta
and 1 Ceres with the DAWN Framing Cameras
|
|
P4.14
|
Kolomiyets, S.
|
Half of century of International
Geophysical Year in 2007
|
|
P4.15
|
Li, J.-Y. et al.
|
Photometric Analysis and
Disk-Resolved Thermal Modeling of Comet 19P/Borrelly from Deep Space 1 Data
|
|
P4.16
|
Mueller, T. et al.
|
Thermophysical characterisation of
Space Mission target asteroids
|
|
P4.17
|
Mysen, E.
|
Content and sensitivity analysis
of radiometric signals generated by a deep space orbiter
|
|
P4.18
|
Mysen, E.
|
Regular motion of a cometary
orbiter induced by outgassing pressure
|
|
P4.19
|
Nogami, K. et al.
|
Interplanetary and Mercurian Dust
Observation by Mercury Dust Monitor (MDM) on Board Bepi Colombo MMO
|
|
P4.20
|
Rivikin, A. et al.
|
Rotationally Resolved IR
Spectroscopy of Ceres and Vesta
|
|
P4.21
|
Roll, R. et al.
|
PHILAE; The ROSETTA Lander
|
|
P4.22
|
Thomas-Osip, J.E. et al.
|
The Las Campanas/Lowell
Observatory 2004 Itokawa campaign
|
|
P4.23
|
Weissman, P.R. et al.
|
CCD Photometry of Asteroid 2867
Steins: Flyby Target of the Rosetta Mission
|
|
P4.24
|
Wooden, D.H. et al.
|
Multi-Epoch Spitzer IRS and
Ground-Based Studies of Comet C/2004 Q2 (Machholz)
|
|
P4.25
|
Young, E.F. et al.
|
HST Ceres Campaign: Size, Shape
and Implications
|
|
Session 5:
The Cometary Population
|
|
R5.1
|
Crovisier, J.
|
The molecular composition of
comets and its interrelation with other small bodies of the Solar System.
|
|
R5.2
|
Prialnik, D.
|
What makes a comet active?
|
|
O5.1
|
Dones, L. et al.
|
Dynamical and Physical Models of
Ecliptic Comets
|
|
O5.2
|
Boice, D.C. et al.
|
Water Chemistry in the Coma of Comet
19P/Borrelly
|
|
O5.3
|
Jockers, K. et al.
|
HCN and CN in Comet 2P/Encke: A
Three-Dimensional View on Comet Encke´s Outgassing
|
|
O5.4
|
Kolokolova, L. et al.
|
Progress in development of a model
of cometary dust based on its light scattering, thermal emission, and in-situ
data
|
|
P5.1
|
Biver, N. et al.
|
Chemical diversity of comets
observed at radio wavelengths in 2003-2005
|
P5.2
|
Cosmovici, C.
|
The detection of the water 1.35 cm
emission line in comets very close to the Sun
|
|
P5.3
|
de Almeida, A.A. et al.
|
On the activity of parabolic
comets: the case of Comet Yanaka (1988r)
|
|
P5.4
|
Dziak-Jankowska, B. et al.
|
Global evolution of short-period
comets. 67P/Churiumov-Gerasimenko case
|
|
P5.5
|
Fernandez, J.A. et al.
|
The population of faint Júpiter
family comets near the Earth
|
|
P5.6
|
Filonenko, V. et al.
|
Peculiarities of light curves and
outburst activity of comets
|
|
P5.7
|
Guliev, A.S. et al.
|
Brightness curves of periodic
comets of 19-th and 20-th centuries
|
|
P5.8
|
Keller, H.U. et al.
|
Kinetic simulation of gas
transport near a non-spherical cometary nucleus
|
|
P5.9
|
Knight, M. et al.
|
Light Curves of Kreutz Comets
|
|
P5.10
|
Küppers, M. et al.
|
Coma abundances in comets from
sub-mm observations and clues about their formation and evolution
|
|
P5.11
|
Snodgrass, C. et al.
|
The physical properties of 7 cometary
nuclei
|
|
P5.12
|
Tseng, W.-L. et al.
|
Cometary water expansion velocity
from OH line shapes
|
|
P5.13
|
Watanabe, J. et al.
|
Detection of the Crystalline
Silicates in Jupiter Family Comet’s: Evidence of effective radial mixing in
the proto-solar disk?
|
|
P5.14
|
Whitman, K. et al.
|
The Size-Frequency Distribution of
Dormant Jupiter Family Comets
|
|
Session 6:
The Trans-Neptunian Population
|
|
R6.1
|
Barucci, M.A.
|
TNO surface properties
|
|
R6.2
|
Gomes, R.
|
Dynamical Structure and Origin of
the Trans-Neptunian Population
|
|
O6.1
|
De Sanctis, M.C et al.
|
G-mode analysis of KBOs
|
|
O6.2
|
Pinilla-Alonso, N. et al.
|
A Spectroscopic Study of the
Surface of (50000) Quaoar: Crystalline Water and Minor Constituents
|
|
O6.3
|
Durham, W.B. et al.
|
Cold Compaction of Porous Ice, and
the Densities of Kuiper Belt Objects
|
|
P6.1
|
Alvarez-Candal, A. et al.
|
Near Infra-red photometry of KBOs
using NIRI
|
|
P6.2
|
Belskaya, I.N. et al.
|
Low phase angle effects in
photometry of Trans-Neptunian objects: 20000 Varuna and 1996 TO66
|
|
P6.3
|
Boehnhardt, H. et al.
|
Polarimetry of Kuiper Belt Objects
and Centaurs
|
|
P6.4
|
Busarev, V.V. et al.
|
On consequences of possible water
ocean existence in large Kuiper belt and similar objects
|
|
P6.5
|
Campo Bagatin, A. et al.
|
Modelling the Populations of
Trans-Neptunian Objects
|
|
P6.6
|
Choi, Y.-J. et al.
|
Thermal structure of Centaur
objects
|
|
P6.7
|
Delsanti, A. et al.
|
Infrared Properties of Kuiper Belt
Objects and Centaurs
|
|
P6.8
|
Emel´yanenko, V. et al.
|
Resonant objects in
high-eccentricity trans-Neptunian orbits
|
|
P6.9
|
Gallardo, T.
|
The relevance of High Order
Resonances and Kozai Mechanism in the Scattered Disk
|
|
P6.10
|
Hussmann, H. et al.
|
Conditions for the Existence of
Sub-Surface Oceans on Icy Satellites and Large KBOs
|
|
P6.11
|
Ivanova, V. et al.
|
Photometry of TNOs, (47171) TC36,
(84922) VS2 and 50000 Quaoar
|
|
P6.12
|
Lykawka, P.S. et al.
|
Dynamical structure and physical
properties of classical transneptunian objects
|
|
P6.13
|
Matese, J.J. et al.
|
A Wide-Binary Solar Companion as a
Possible Origin of Sedna-like Objects
|
|
P6.14
|
Merlin, F. et al.
|
Heterogeneity of the surface of
the TNO 47171 (1999 TC36) and the Centaur 32532 Thereus (2001 PT13)
|
|
P6.15
|
Ortiz, J.L. et al.
|
Short term rotational variability
of seven TNOs and a Centaur from Sierra Nevada Observatory.
|
|
P6.16
|
Roques, F. et al.
|
Discovery of small Kuiper Belt
Objects by Stellar Occultations
|
|
P6.17
|
Rousselot, P. et al.
|
Photometric study of Centaur
(60558) 2000 EC98 and Trans-Neptunian Object (55637) 2002 UX25
|
|
P6.18
|
Santos Sanz, P.S. et al.
|
New Photometry Results on TNOs and
Centaurs from the ESO VLT.
|
|
P6.19
|
Trujillo, C.A. et al.
|
Near-Infrared Surface Properties
of the Most Distant Minor Planet (90377) Sedna
|
|
Session 7:
The Near-Earth Population
|
|
R7.1
|
Binzel, R.P.
|
Properties of the Near-Earth
Object Population
|
|
R7.2
|
Chesley, S.R.
|
Orbit Estimation and Potential
Impact Detection for Near-Earth Asteroids
|
|
O7.1
|
Tholen, D.J. et al.
|
Twenty Thousand Leagues Under the
Sea: Probing the Depths of the Solar System
|
|
O7.2
|
Valsecchi, G.B. et al.
|
2004 MN4 keyholes
|
|
O7.3
|
Delbó, M. et al.
|
The thermal inertia of near-Earth
asteroids: implications for their surface structure and the Yarkovsky effect
|
|
O7.4
|
Walsh, K.J. et al.
|
Binary Near-Earth Asteroid
Formation: Rubble Pile Model of Tidal Disruptions
|
|
O7.5
|
Boattini, A. et al.
|
Low solar elongation NEO searches
with ESO telescopes
|
|
P7.1
|
Bernardi, F. et al.
|
The Discovery Circumstances of
2004 MN4
|
|
P7.2
|
De Leon, J. et al.
|
Modified Gaussian Model applied to
a sample of near-Earth Asteroids
|
|
P7.3
|
Galád, A. et al.
|
Joint lightcurve observations of
10 near-Earth asteroids from Modra and Ondřejov
|
|
P7.4
|
Królikowska, M. et al.
|
Impact orbits of large PHAs
|
|
P7.5
|
Marchi, S. et al.
|
Origin of NEOs: Hints Based on
Taxonomy and Dynamics of Peculiar Objects
|
|
P7.6
|
Polishook, D. et al.
|
Photometry of Atens
|
|
P7.7
|
Tholen, D. et al.
|
Astrometric Follow-up of
Near-Earth Asteroids
|
|
P7.8
|
Tichy, M. et al.
|
KLENOT - NEOs and Virtual Impactors
|
|
P7.9
|
Toth, J. et al.
|
Search for very close approaching NEAs
|
|
P7.10
|
Vernazza, P. et al.
|
Spectroscopic study of NEOs
|
|
Round Table Discussion 1:
The Size Distribution of Minor Solar System Bodies
|
|
C1.1
|
Tancredi, G. (coordinator)
|
|
C1.2
|
Chapman, C.R.
|
|
C1.3
|
Weissman, P.
|
|
Session 8:
The Meteoroid Population
|
|
R8.1
|
Ryabova, G.O.
|
Meteoroid streams: mathematical modelling
and observations
|
|
R8.2
|
Borovicka, J.
|
Physical and chemical properties
of meteoroids
|
|
O8.1
|
ReVelle, D.O. et al.
|
Infrasound from Large, High
Altitude Leonid and Perseid Meteors: Cometary Meteoroid Connections
|
|
O8.2
|
Porubcan, V. et al.
|
The Taurid complex meteor showers
and asteroids
|
|
O8.3
|
Bagrov, A. et al.
|
Determination of meteor stream age
by fine structure of its radiant
|
|
O8.4
|
Toth, J. et al.
|
Orbital evolution of meteoroids
fragmented in space
|
|
P8.1
|
Bagrov, A.V. et al.
|
Three years of TV-monitoring of
meteor events
|
|
P8.2
|
Bagrov, A.
|
Correct distribution of meteors
with brightness up to 9 magnitude by TV observations in August 2004.
|
|
P8.3
|
Brosch, N. et al.
|
Characterization of meteor light
curves
|
|
P8.4
|
Celestino, C.C. et al.
|
A study of the dynamics of
meteoroid dust particles around the Earth
|
|
P8.5
|
Filin, I.V. et al.
|
Microshower structure of a meteor
complex as measured by Kazan Meteor Radar (KMR) in March and October
|
|
P8.6
|
Gladman, B. et al.
|
Decoherence time scales for
meteoroid streams
|
|
P8.7
|
Kalabanov, S. et al.
|
Radiation area structure of the
meteor shower Daytime Arietids through the years
|
|
P8.8
|
Köhler, M. et al.
|
Aggregate models to simulate
radiation pressure force on meteoroids
|
|
P8.9
|
Kolomiyets, S.
|
Structure of the Trans-Neptunian
region according meteor radar data
|
|
P8.10
|
Kolomiyets, S. et al.
|
Meteor researches at the KHNURE
(Ukraine)
|
|
P8.11
|
Koten, P. et al.
|
Quadrantid meteors and the
implications for the parent body of this meteor shower
|
|
P8.12
|
Koten, P. et al.
|
Comparison of two different
methods for measurement of video meteors
|
|
P8.13
|
Nazarava, K.
|
Strength of fireballs entering the
Earth atmosphere
|
|
P8.14
|
Ohnishi, K. et al.
|
The First detection of Perseids
Lunar Impact Flash and Meteoroid Distribution of 1 rev-Dust Trail of
109P/Swift-Tuttle
|
|
P8.15
|
ReVelle, D.O. et al.
|
The September 3rd, 2004 Antarctic Bolide:
Luminosity Modeling and Infrasound Location of a Large Aten Meteoroid
|
|
P8.16
|
ReVelle, D.O. et al.
|
Infrasonic Analyses of Bolides
Observed Simultaneously by Satellites
|
|
P8.17
|
Rudawska, R. et al.
|
The changes of the orbital
elements and estimation of the initial velocities of stream meteoroids
ejected from comets and asteroids
|
|
P8.18
|
Spurny, P. et al.
|
Fragmentation modeling of 3
European Network bolides with extremely good observational data including a
IIIB Aten-type orbit event
|
|
P8.19
|
Svoren, J. et al.
|
Filaments of Perseids and
resonances with Jupiter and Saturn
|
|
P8.20
|
Trigo-Rodríguez, J.M. et al.
|
Orbital elements of 2004 Perseid
young meteoroids obtained by the Spanish Fireball Network
|
|
P8.21
|
Vilas-Boas, J.W. et al.
|
Investigations of meteors from
data of the SKYiMET radar and GPS.
|
|
P8.22
|
Watanabe, J. et al.
|
Phoenicids in 1956 revisited
|
|
P8.23
|
Wu, G.
|
Alterable definitions about
meteoric storms
|
|
Session
9:
Meteorites and Asteroid Families
|
|
R9.1
|
Pieters, C. et al.
|
Asteroid-Meteorite Links: The Vesta
Conundrum(s)
|
|
R9.2
|
Nesvorny, D. et al.
|
Asteroid Families
|
|
O9.1
|
Melita, M. et al.
|
Physical and dynamical
characterization of the Trojan asteroids
|
|
O9.2
|
Fulchignoni, M. et al.
|
Spectroscopic characterization of
the Karin family
|
|
O9.3
|
Mothé-Diniz, T. et al.
|
Investigating the composition of
the Eos Family through NIR spectra
|
|
O9.4
|
Duffard, R. et al.
|
Mineralogical correlation between
HED meteorites and V-type asteroids
|
|
P9.1
|
Abdu, Y.A. et al.
|
Mössbauer Study of Tenite from the
Vaca Muerta Mesosiderite
|
|
P9.2
|
Brunetto, R. et al.
|
Simulation of asteroidal space
weathering by ion irradiation experiments
|
|
P9.3
|
Brunetto, R. et al.
|
Space weathering of silicate-rich
asteroids: observations and ion irradiation experiments
|
|
P9.4
|
Bus, S.J.
|
A Search for Spectro-dynamical
Asteroid Families
|
|
P9.5
|
Carruba, V. et al.
|
On the V-type asteroids outside
the Vesta family: the cases of 956 Elisa and 809 Lundia
|
|
P9.6
|
Cheng, A.F. et al.
|
Age of the Karin Cluster
|
|
P9.7
|
Dotto, E. et al.
|
Jupiter Trojan asteroids:
investigation of dynamical families
|
|
P9.8
|
Duffard, R. et al.
|
Revisiting spectral parameters of
silicate-bering meteorites
|
|
P9.9
|
Fu, H. et al.
|
Identifying Near Earth Object
Families
|
|
P9.10
|
Gil-Hutton, R. et al.
|
Polarimetric Albedo of V-type
Asteroids
|
|
P9.11
|
Golubeva, L. et al.
|
Faint Absorption Bands in Visual
Range of the Vestoid Reflectance Spectra
|
|
P9.12
|
Häggström, T. et al.
|
Extraterrestrial chromite grains
as tracers of meteorite flux during the middle Ordovician
|
|
P9.13
|
Hilton, J.
|
A Quick Method for Determining
Membership in Asteroid Families
|
|
P9.14
|
Jarvis, K.S. et al.
|
Minor Absorption Bands in Asteroid
4 Vesta and Daughter Asteroids: Keys to Vesta’s Internal Structure?
|
|
P9.15
|
Kryszczynska, A. et al.
|
Photometry of the Flora family
asteroids
|
|
P9.16
|
Pavlovic, R.
|
Applicability of the Nekhoroshev
Theorem in Veritas Family Chaotic Region
|
|
P9.17
|
Prado, P. et al.
|
Petrografy of two Brazilian
meteorites: Bendego´ (BA) and Marilia (SP)
|
|
P9.18
|
Sasaki, S. et al.
|
Spectral Observation of a New-Born
Asteroid 832 Karin: A Body with Old and New Surfaces
|
|
P9.19
|
Sunshine, J.M. et al.
|
Olivine-Rich Asteroids and
Meteorites: Distinguishing Nebular and Igneous Histories
|
|
P9.20
|
Willman, M. et al.
|
Space Weathering of the Youngest
Asteroids
|
|
P9.21
|
Yoshida, F. et al.
|
Photometric observations of Karin
Family Asteroids
|
|
P9.22
|
Zolensky, M.
|
The Nature of Ponded Deposits on
Eros
|
|
Session 10:
Binaries and Satellites
|
|
R10.1
|
Noll, K.
|
Solar System Binaries
|
|
R10.2
|
Sheppard, S.
|
Outer Satellites of the Planets
and their Relationship with Asteroids, Comets, and Kuiper Belt Objects
|
|
O10.1
|
Marchis, F. et al.
|
On the Diversity of Binary
Asteroid Orbits
|
|
O10.2
|
Pravec, P. et al.
|
Binary population among NEAs and
beyond
|
|
O10.3
|
Merline, W.J. et al.
|
Properties of Koronis Binaries
|
|
O10.4
|
Sicardy, B. et al.
|
The 11 July 2005 Charon stellar
occultation
|
|
P10.1
|
Berthier, J. et al.
|
Prediction of stellar occultations
by satellite of asteroids
|
|
P10.2
|
Callegari Jr., N. et al.
|
Dynamics of Two Satellites in the
2/1 Mean-Motion Resonance
|
|
P10.3
|
Chatterjee, T.K.
|
Origin and Evolutionary Orbital
Trends of Satellite systems and Minor Bodies
|
|
P10.4
|
Colas, F. et al.
|
Four new binary asteroids
|
|
P10.5
|
Coradini, A. et al.
|
The Phoebe Capture
|
|
P10.6
|
de Felipe, G. et al.
|
Distribuition of the Irregular
satellites of the Jupiter and Saturn
|
|
P10.7
|
Descamps, P. et al.
|
Insights on 90 Antiope double
asteroid combining VLT-AO and Lightcurve Observations
|
|
P10.8
|
Giuliatti Winter, S.M. et al.
|
Some comments between the
discovered satellites and the F ring of Saturn
|
|
P10.9
|
Hestroffer, D. et al.
|
Orbit determination of binary
asteroids
|
|
P10.10
|
Parisi, M.G. et al.
|
On the Origin of the Obliquity of
Uranus and its Irregular Satellites
|
|
P10.11
|
Scheirich, P.
|
Models of binary near-Earth
asteroids
|
|
P10.12
|
Sheppard, S. et al.
|
The Discovery of 2004 UP10: The
Second Known Neptune Trojan
|
|
P10.13
|
Silva, A.A. et al.
|
Orbits Around Irregular Shaped
Minor Bodies
|
|
P10.14
|
Warner, B.D. et al.
|
Binary Hungarias (5905) Johnson
and (9069) Hovland: their Relations to Small Binary Vestoids and NEAs
|
|
Session 11:
Collisions and Collisional Evolution
|
|
R11.1
|
Campo Bagatin, A.
|
Collisional evolution of the
populations of asteroids, Trojans and TNOs
|
|
O11.1
|
Richardson, D.C. et al.
|
Rubble Pile Equilibria and
Dynamics
|
|
O11.2
|
Denicol, G.S. et al.
|
Scaling laws for the fragmentation
of rubble-pile asteroids
|
|
O11.3
|
Housen, K.
|
Collisional Fragmentation of
Rotating Bodies
|
|
P11.1
|
Busarev, V.V. et al.
|
On the Instability of the Asteroid
– Rubble Pile (ARP)
|
|
P11.2
|
Chang, H.-Y. et al.
|
Time Series Analysis of
Terrestrial Impact Crater Records
|
|
P11.3
|
Durda, D.D. et al.
|
Size-frequency distributions of
fragments from SPH/N-body simulations: comparison with observed asteroid
families
|
|
P11.4
|
Flynn, G.J. et al.
|
Catastrophic discuption of
hydrated targets
|
|
P11.5
|
Gabryszewski, R.
|
Dynamical Effects of Protocometary
Objects Tidal Disruption
|
|
P11.6
|
Koutsoukos, E.A.M
|
Effects of an impact event in the
sedimentary record: the K-T boundary at Poty, NE Brazil
|
|
P11.7
|
Leliwa-Kopystynski, J. et al.
|
Large craters on small Solar
System objects
|
|
P11.8
|
Yanagisawa, M. et al.
|
The first confirmed Perseid Lunar
Impact Flash
|
|
Session 12:
Collective Dynamics and Analysis from Large Surveys
|
|
R12.1
|
Broz, M.
|
Non-gravitational forces acting on
small bodies
|
|
O12.1
|
Kavelaars, J.J et al.
|
The orbital structure of the outer
solar system: First Results from CFEPS
|
|
O12.2
|
Gladman, B. et al.
|
The SKADS project: survey
definitions and detections
|
|
O12.3
|
Jedicke, R.
|
The Pan-STARRS Moving Object
Processing System
|
|
O12.4
|
Gronchi, G.F. et al.
|
The identification of objects
discovered in next generation asteroid/comet surveys.
|
|
O12.5
|
Milani, A. et al.
|
Removing the main belt bias in
orbit determination for the next generation asteroid/comet surveys
|
|
P12.1
|
Araújo, R.A.N. et al.
|
Dynamical Sphere of Influence
|
|
P12.2
|
Arratia, O. et al.
|
Multiple solutions for asteroid
orbits: applications in identification and impact monitoring
|
|
P12.3
|
Brosch, N. et al.
|
Asteroid observations in Israel
|
|
P12.4
|
Broz, M. et al.
|
Elusive Zhongguos and Griquas -
long-lived asteroids inside the J2/1 resonance.
|
|
P12.5
|
Cachucho, F. et al.
|
Slow Diffusion in 5-2-2 Three Body
Mean Motion Resonance of the (490) Veritas Asteroidal Family
|
|
P12.6
|
Capek, D. et al.
|
Accurate vs efficient methods of
the Yarkovsky/YORP effect computation
|
|
P12.7
|
Cordeiro, R.R.
|
Anomalous Diffusion and Stable
Chaos
|
|
P12.8
|
Davis, D.R. et al.
|
SKADS: Implications for Main-Belt
Asteroids
|
|
P12.9
|
De Luise, F. et al.
|
The CINEOS project
|
|
P12.10
|
Jedicke, R. et al.
|
SKADS: Bias determination and
orbital distribution
|
|
P12.11
|
Jones, D.C. et al.
|
Dynamics of Objects in the 40 -
42AU Region of the Kuiper Belt
|
|
P12.12
|
Kaasalainen, M.
|
Fast-track asteroid models from groundbased
and other surveys
|
|
P12.13
|
Kavelaars, J.J. et al.
|
The Canada-France Ecliptic Plane
Survey (CFEPS).
|
|
P12.14
|
Knezevic, Z. et al.
|
Orbit determination from very
short arcs: attributable orbital elements and their uncertainty
|
|
P12.15
|
Królikowska, M. et al.
|
Non-gravitational motion of the
Jupiter-family Comet 81P/Wild 2 and its dynamical evolution
|
|
P12.16
|
Laakso, T. et al.
|
Gravitational scattering by giant
planets
|
|
P12.17
|
Lopez Garcia, A.
|
Automatic reduction of CCD
observations
|
|
P12.18
|
Michel, P. et al.
|
Long term dynamics of the asteroid
(25143) Itokawa to be sampled by the spacecraft Hayabusa
|
|
P12.19
|
Minato, T. et al.
|
Drag forces on dust in the solar
system and circumstellar disks
|
|
P12.20
|
Rousselot, P. et al.
|
Besançon Photometric database for Kuiper-Belt
Objects and Centaurs
|
|
P12.21
|
Sansaturio, M.E. et al.
|
Linking and attributing separate
detections of asteroids/comets
|
|
P12.22
|
Shefer, V.A.
|
Numerical Treatment of Close
Encounters in the Perturbed Restricted Three-Body Problem
|
|
P12.23
|
Shefer, V.A.
|
Dynamical Astronomy Methods Using
a Fictitious Attracting Centre with a Variable Mass
|
|
P12.24
|
Svoren, J.
|
60 years of cometary astrometry at
the Skalnate Pleso Observatory
|
|
P12.25
|
Tancredi, G. et al.
|
Automatic detection of fireballs
in All-sky images
|
|
P12.26
|
Vieira Neto, E. et al.
|
Gravitational Capture of Asteroids
by Gas-Drag
|
|
Round table discussion 2:
The Impending Deluge of Data from New Large-Scale Surveys
|
|
C2.1
|
Bowell, E. (coordinator)
|
|
Session 13:
A Global View: Small Bodies of the Solar System
|
|
R13.1
|
Drake, M.
|
Origin of water in the terrestial
planets
|
|
R13.2
|
Capria, M.T. et al.
|
Outer Solar System small bodies
interiors
|
|
O13.1
|
Sitarski, G.
|
Probability of the Earth-asteroid
collision and impact orbits
|
|
O13.2
|
O’Brien, D.P. et al.
|
Re-Evaluating the Primordial
Excitation and Clearing of the Main Belt
|
|
O13.3
|
Brasser, R. et al.
|
Embedded Star Clusters and the
Formation of the Inner Oort Cloud
|
|
O13.4
|
Durda, D.D. et al.
|
A Spacecraft Mission to Near-Earth
Asteroid 2004 MN4: Call to Action
|
|
P13.1
|
Dybczynski, P.A.
|
Recent stellar perturbers of the Oort
cloud and their simulated output
|
|
P13.2
|
Kawakita, H.
|
Sensitive Search for the Monodeuterated
Methane in Comets
|
|
P13.3
|
Rickman, H. et al.
|
Algorithms for stellar perturbation
computations on Oort cloud comets
|
|
Session 14:
Comets and Asteroids
|
|
R14.1
|
Schulz, R.
|
Compositional coma investigations:
dust and gas production rates in comets
|
|
R14.2
|
Hsieh, H.H. et al.
|
Active Asteroids: Mystery in the
Main Belt
|
|
O14.1
|
Licandro, J. et al.
|
Surface properties of asteroids in
cometary orbits (ACOs)
|
|
O14.2
|
Bockelee-Morvan, D. et al.
|
New constraints on the origin of
HNC in comets
|
|
O14.3
|
Biver, N. et al.
|
Submillimeter observations of
comets with Odin in 2001-2005
|
|
O14.4
|
Strazzulla, G. et al.
|
Ultra-red carbonaceous materials
produced by ion irradiation of ices
|
|
P14.1
|
Alvarez-Candal, A. et al.
|
Observations of asteroids in cometary
orbits
|
|
P14.2
|
Andrade, D.P.P. et al.
|
Interaction between solar wind
electrons and icy pre-biotic molecules in comets
|
|
P14.3
|
Baliyan, K.S. et al.
|
Understanding the nature of dust
grains in Comets
|
|
P14.4
|
Boissier, J. et al.
|
Modelling CO and CS observations
in comet Hale-Bopp at IRAM Plateau de Bure interferometer
|
|
P14.5
|
Capria, M.T. et al.
|
High resolution spectroscpy of
comets at Telescopio Nazionale Galileo (La Palma)
|
|
P14.6
|
Colin-Garcia, M. et al.
|
Organic material formed by
gamma-irradiation on cometary laboratory models, the case of frozen HCN
|
|
P14.7
|
Crovisier, J. et al.
|
Comets recently observed with the Nançay
radio telescope
|
|
P14.8
|
DeMeo, F.E. et al.
|
Comets in the Near-Earth Object
Population
|
|
P14.9
|
Farenzena, L.S. et al.
|
Organic molecules formation in
irradiated H2O+CO2 ice
|
|
P14.10
|
Ferreira-Rodrigues, A.M.S. et al.
|
Solar wind electrons interaction
with molecules in cometary's atmosphere
|
|
P14.11
|
Hadamcik, E. et al.
|
Imaging polarimetry of comets: New
observations (e.g. C2004 Q2 Machholz) and interpretation of the results
|
|
P14.12
|
Harris, W. et al.
|
Wide-Field Evolution of Volatile
Species in the Coma of Comet Hale-Bopp
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P14.13
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Howell, E.S. et al.
|
Observations of the 18-cm OH lines
in Comet 2P/Encke at Arecibo Observatory
|
|
P14.14
|
Iza, P. et al.
|
Experimental simulation of solar
wind and cosmic rays effects on cometary ice
|
|
P14.15
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Jockers, K. et al.
|
CCD imaging and aperture polarimetry
of comet 2P/Encke: Are there two polarimetric classes of comets?
|
|
P14.16
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Kiselev, N. et al.
|
Database of comet polarimetry
|
|
P14.17
|
Kochemasov, G.
|
Comet 81P/Wild2 confirmed a
predominant global wave shaping of celestial bodies especially sharply seen
in images of small bodies
|
|
P14.18
|
Licandro, J. et al.
|
Hydrated minerals on the surface
of (3200) Phateon?
|
|
P14.19
|
Lowry, S. et al.
|
New visual and infrared
observations of Near-Earth asteroids in cometary-like orbits
|
|
P14.20
|
Martinez, R. et al.
|
Ion Cluster Desorption from Frozen
CO Induced by Impact of Heavy Multi-Charged Ions
|
|
P14.21
|
Nolan, M.C. et al.
|
Arecibo Radar Detection of the
Nucleus and Coma of C/2004 Q2 (Machholz)
|
|
P14.22
|
Picazzio, E. et al.
|
Narrow-band Photometry and Optical
Spectroscopy of Comet C/2002 T7 (LINEAR) at Observatório do Pico dos Dias in
Brazil
|
|
P14.23
|
Pilling, S. et al.
|
The effects of solar wind
particles in cometary gaseous organic molecules: formic acid
|
|
P14.24
|
Rosenbush, V. et al.
|
Circular polarization in comets:
new results for comet C/1999 S4 (LINEAR) and their analysis
|
|
P14.25
|
Samarasinha, N. et al.
|
Morphological Analysis of Dust and
Gas Comae of Comet Machholz (2004 Q2)
|
|
P14.26
|
Sanwal, B.B.
|
Spectrophotometric Study of Comets
|
|
P14.27
|
Sanzovo, D.T. et al.
|
On the outgassing rates of CO and
dust in 2060 Chiron at large heliocentric distances
|
|
P14.28
|
Schulz, R. et al.
|
Coma morphology of three
non-periodic comets
|
|
P14.29
|
Sekanina, Z. et al.
|
Discovery, Splitting, and Sudden
Disappearance of Comet C/2004 S1 (Van Ness)
|
|
P14.30
|
Sosa, A. et al.
|
Cometary masses derived from nongravitational
forces
|
|
P14.31
|
Szutowicz, S. et al.
|
Orbital linkages of comet
6P/d´Arrest based on its asymmetric light curves
|
|
P14.32
|
Velichko, S.F. et al.
|
Polarymetry and photometry of
comet C/2004 Q2 (Machholz)
|
|
P14.33
|
Voelzke, M.R.
|
Temporal Analysis of the Tail
Structures of Comet P/Halley 1910 II
|
|
P14.34
|
Ziffer, J. et al.
|
Near-infrared Spectra of Two
Asteroids with Low Tisserand Invariant
|
|
P14.35
|
Jehin, E. et al.
|
The Nitrogen and Carbon isotopic
ratios in comets
|
|
Session 15:
Physical Properties of Small Bodies
|
|
R15.1
|
Harris, A.W. (USA) et al.
|
Rotational Properties of
Asteroids, Comets and TNOs
|
|
R15.2
|
Harris, A. (Germany)
|
The Surface Properties of Small
Asteroids from Thermal-Infrared Observations
|
|
O15.1
|
Belskaya, I.N et al.
|
Polarimetry of asteroids: results
of cooperative observing program
|
|
O15.2
|
Holsapple, K.
|
Rubble piles or not? An
interpretation of the asteroid spin data
|
|
O15.3
|
Peixinho, N. et al.
|
Understanding the surface
properties of Centaurs and TNOs through visible multicolor photometry
|
|
O15.4
|
Granvik, M. et al.
|
Linking and Identifying Hitherto
Unidentified Asteroid Observations
|
|
P15.1
|
Birlan, M. et al.
|
Near-IR spectra of 21 Lutetia,
target of Rosetta mission
|
|
P15.2
|
Brunetto, R. et al.
|
Asteroidal space weathering
simulated by nanosecond pulse UV excimer laser
|
|
P15.3
|
Carvano, J.M. et al.
|
Compositional analysis of thermal
infrared spectra of asteroids
|
|
P15.4
|
Cellino, A. et al.
|
Asteroid Polarimetry: Recent
Results
|
|
P15.5
|
Delbó, M. et al.
|
Observations of asteroids with the
VLTI: 1459 Magnya
|
|
P15.6
|
Durech, J. et al.
|
Asteroid sparse photometric data
from astrometric observations
|
|
P15.7
|
Fornasier, S. et al.
|
Looking for absorption features on
E, M and X type asteroids
|
|
P15.8
|
Gil-Hutton, R.
|
Polarimetry of M- and P-type
asteroids: Preliminary results
|
|
P15.9
|
Gutierrez, P.J. et al.
|
The amplitude-phase relationship
for asteroids revisited again.
|
|
P15.10
|
Kwiatkowski, T. et al.
|
Photometry of 2004 RZ164 -- a fast
rotating, tumbling asteroid
|
|
P15.11
|
Lupishko, D.
|
On the bulk density and porosity
of M-type asteroid 16 Psyche
|
|
P15.12
|
Michalowski, T. et al.
|
Lightcurves and models of selected
asteroids
|
|
P15.13
|
Mothé-Diniz, T.
|
D-type asteroids: global view and
search for minor absorptions
|
|
P15.14
|
Mueller, M. et al.
|
Thermal inertia of small asteroids
from detailed thermophysical modeling
|
|
P15.15
|
Nathues, A. et al.
|
A study of Cybele asteroids II.
Spectral properties of Cybele asteroids
|
|
P15.16
|
Nathues, A. et al.
|
Color variations of 15 Eunomia
|
|
P15.17
|
Reddy, V. et al.
|
Temperature and Phase
Angle-induced spectral effects on A- and S-type Asteroids
|
|
P15.18
|
Scheirich, P.
|
Tumbling asteroids models
|
|
P15.19
|
Shevchenko, V.G. et al.
|
Opposition effect of dark
asteroids
|
|
P15.20
|
Shkuratov, Yu.G. et al.
|
Photometric and polarimetric opposition
effects for cometary dust atmospheres and asteroid regoliths: laoratory
modeling and computer simulation
|
|
P15.21
|
Velichko, F.P.
|
Polarimetric observations of
asteroids 1 Ceres and 4 Vesta
|
|
P15.22
|
Vernazza, P et al.
|
Analysis of near-IR spectra of 1 Ceres
and 4 Vesta, targets of the Dawn Mission
|
|
P15.23
|
Wang, X. et al.
|
The distinct lightcurve shape of
the asteroid (469):
|
|
P15.24
|
Warner, B.D. et al.
|
A Lightcurve Study of the Inner
Main-Belt Hungaria Asteroids
|
|
|
 |
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