WISE/NEOWISE OBSERVATIONS OF THE JOVIAN TROJAN POPULATION: TAXONOMY
暂无分享,去创建一个
Amy K. Mainzer | Tommy Grav | James M. Bauer | J. Masiero | T. Grav | C. Nugent | J. Bauer | A. Mainzer | Carrie R. Nugent | Joe R. Masiero | J. M. Bauer | J. Bauer
[1] K. Tsiganis,et al. Origin of the cataclysmic Late Heavy Bombardment period of the terrestrial planets , 2005, Nature.
[2] Richard P. Binzel,et al. Small main-belt asteroid spectroscopic survey: Initial results , 1995 .
[3] A. Doressoundiram,et al. Reopening the TNOs color controversy: Centaurs bimodality and TNOs unimodality , 2003 .
[4] T. Grav,et al. WISE/NEOWISE OBSERVATIONS OF THE HILDA POPULATION: PRELIMINARY RESULTS , 2011, 1110.0283.
[5] Dale P. Cruikshank,et al. NEAR-INFRARED SPECTROSCOPY OF TROJAN ASTEROIDS: EVIDENCE FOR TWO COMPOSITIONAL GROUPS , 2008, 1012.1284.
[6] F. Marzari,et al. Clues to the origin of jupiter's trojans: the libration amplitude distribution , 2003 .
[7] K. Abazajian,et al. THE SEVENTH DATA RELEASE OF THE SLOAN DIGITAL SKY SURVEY , 2008, 0812.0649.
[8] Alessandro Morbidelli,et al. A low mass for Mars from Jupiter’s early gas-driven migration , 2011, Nature.
[9] David Jewitt,et al. CCD spectra of asteroids. II - The Trojans as spectral analogs of cometary nuclei , 1990 .
[10] Richard P. Binzel,et al. Phase II of the Small Main-Belt Asteroid Spectroscopic Survey: A Feature-Based Taxonomy , 2002 .
[11] E. L. Wright,et al. PRELIMINARY RESULTS FROM NEOWISE: AN ENHANCEMENT TO THE WIDE-FIELD INFRARED SURVEY EXPLORER FOR SOLAR SYSTEM SCIENCE , 2011, 1102.1996.
[12] Driss Takir,et al. Outer Main Belt asteroids: Identification and distribution of four 3-μm spectral groups , 2011 .
[13] Larry Denneau,et al. The Pan-STARRS Synthetic Solar System Model: A Tool for Testing and Efficiency Determination of the Moving Object Processing System , 2011 .
[14] F. Marzari,et al. The surface composition of Jupiter Trojans: Visible and near-infrared survey of dynamical families ☆ , 2006 .
[15] Z. Ivezic,et al. The properties of Jovian Trojan asteroids listed in SDSS Moving Object Catalogue 3 , 2007, astro-ph/0703026.
[16] Joseph A. Burns,et al. Discovery of 12 satellites of Saturn exhibiting orbital clustering , 2001, Nature.
[17] F. De Luise,et al. Visible spectroscopic and photometric survey of Jupiter Trojans: Final results on dynamical families , 2007, 0704.0350.
[18] J. Brucato,et al. Interpretation of Cassini/CIRS observation of Saturn's satellite Phoebe , 2010 .
[19] E. L. Wright,et al. NEOWISE OBSERVATIONS OF NEAR-EARTH OBJECTS: PRELIMINARY RESULTS , 2011, 1109.6400.
[20] T. Gehrels,et al. The second Palomar-Leiden Trojan survey , 1991 .
[21] K. Tsiganis,et al. Chaotic capture of Jupiter's Trojan asteroids in the early Solar System , 2005, Nature.
[22] C. Lagerkvist,et al. U)BVRI photometry of Trojan L5 asteroids , 2009 .
[23] Y. Krugly,et al. Opposition effect of Trojan asteroids , 2012 .
[24] Harold F. Levison,et al. From the Kuiper Belt to Jupiter-Family Comets: The Spatial Distribution of Ecliptic Comets☆ , 1997 .
[25] Harold F. Levison,et al. Dynamics of the Giant Planets of the Solar System in the Gaseous Protoplanetary Disk and Their Relationship to the Current Orbital Architecture , 2007, 0706.1713.
[26] T. Grav,et al. THERMAL MODEL CALIBRATION FOR MINOR PLANETS OBSERVED WITH WIDE-FIELD INFRARED SURVEY EXPLORER/NEOWISE , 2011 .
[27] David Jewitt,et al. A NEAR-INFRARED SEARCH FOR SILICATES IN JOVIAN TROJAN ASTEROIDS , 2011, 1101.5167.
[28] Richard P. Binzel,et al. An extension of the Bus asteroid taxonomy into the near-infrared , 2009 .
[29] R. Clark,et al. Infrared (0.83–5.1 μm) photometry of Phoebe from the Cassini Visual Infrared Mapping Spectrometer , 2008 .
[30] F. Marzari,et al. Visible spectroscopic and photometric survey of L5 Trojans: investigation of dynamical families , 2004 .
[31] E. Wright,et al. THERMAL MODEL CALIBRATION FOR MINOR PLANETS OBSERVED WITH WISE/NEOWISE: COMPARISON WITH INFRARED ASTRONOMICAL SATELLITE , 2011, 1106.5734.
[32] Phase curves of nine Trojan asteroids over a wide range of phase angles , 2009, 0912.1888.
[33] D. Jewitt,et al. ALBEDOS OF SMALL JOVIAN TROJANS , 2009, 0906.1786.
[34] University of British Columbia,et al. Photometric survey of the irregular satellites , 2003, astro-ph/0301016.
[35] Paul E. Johnson,et al. Spectrophotometry of J8, J9, and four Trojan asteroids from 0.32 to 1.05 μm , 1981 .
[36] D. J. Tholen,et al. The Eight-Color Asteroid Survey: Results for 589 Minor Planets , 1985 .
[37] E. L. Wright,et al. NEOWISE STUDIES OF SPECTROPHOTOMETRICALLY CLASSIFIED ASTEROIDS: PRELIMINARY RESULTS , 2011, 1109.6407.
[38] A deeper look at the colors of the saturnian irregular satellites , 2006, astro-ph/0611590.
[39] P. H. Hasselmann,et al. SDSS-based taxonomic classification and orbital distribution of main belt asteroids , 2010 .
[40] Jonathan I. Lunine,et al. Saturn's moon Phoebe as a captured body from the outer Solar System , 2005, Nature.
[41] Hans Scholl,et al. Capture of Trojans by a Growing Proto-Jupiter , 1998 .
[42] J. Carvano,et al. Search for relations among a sample of 460 asteroids with featureless spectra , 2003 .
[43] R. Duffard,et al. S3OS2: the visible spectroscopic survey of 820 asteroids , 2004 .
[44] M. Martino,et al. Spectroscopic observations of Jupiter Trojans , 2004 .
[45] T. Grav,et al. WISE/NEOWISE OBSERVATIONS OF THE JOVIAN TROJANS: PRELIMINARY RESULTS , 2011, 1110.0280.
[46] B. Schmitt,et al. Goethite as an alternative origin of the 3.1 μm band on dark asteroids , 2011 .