The effect of gas drag on the growth of protoplanets. Analytical expressions for the accretion of small bodies in laminar disks
暂无分享,去创建一个
[1] H. F. Levison,et al. MODELING THE FORMATION OF GIANT PLANET CORES. I. EVALUATING KEY PROCESSES , 2009, 0912.3144.
[2] S. Weidenschilling,et al. Dust to planetesimals: Settling and coagulation in the solar nebula , 1980 .
[3] Giovanni B. Valsecchi,et al. Planetary accretion rates: Analytical derivation , 1991 .
[4] J. Papaloizou,et al. Mid‐plane sedimentation of large solid bodies in turbulent protoplanetary discs , 2006 .
[5] B. Dubrulle,et al. The Dust Subdisk in the Protoplanetary Nebula , 1995 .
[6] S. Inaba,et al. Enhanced collisional growth of a protoplanet that has an atmosphere , 2003 .
[7] J. Lissauer,et al. Nebular Gas Drag and Planetary Accretion , 1993 .
[8] John E. Chambers,et al. Oligarchic growth with migration and fragmentation , 2008 .
[9] J. Chambers. A semi-analytic model for oligarchic growth , 2006 .
[10] A. Youdin,et al. Particle Stirring in Turbulent Gas Disks: Including Orbital Oscillations , 2007, 0707.2975.
[11] R. Neri,et al. Dust properties of protoplanetary disks in the Taurus-Auriga star forming region from millimeter wavelengths , 2009, 0912.3356.
[12] T. Henning,et al. Survival of the mm-cm size grain population observed in protoplanetary disks , 2007, 0704.2332.
[13] O. Benvenuto,et al. On oligarchic growth of planets in protoplanetary disks , 2008 .
[14] J. Makino,et al. Scattering of Planetesimals by a Protoplanet: Slowing Down of Runaway Growth , 1993 .
[15] J. Lissauer,et al. Accretion rates of protoplanets: II. Gaussian distributions of planetesimal velocities , 1991 .
[16] Alexander G. G. M. Tielens,et al. The Physics of Dust Coagulation and the Structure of Dust Aggregates in Space , 1997 .
[17] H. A. Watts,et al. Solving Nonstiff Ordinary Differential Equations—The State of the Art , 1976 .
[18] Planet formation by coagulation: A focus on Uranus and Neptune , 2004, astro-ph/0405215.
[19] W. Bottke,et al. Towards initial mass functions for asteroids and Kuiper Belt Objects , 2010, 1004.0270.
[20] S. Weidenschilling. The distribution of mass in the planetary system and solar nebula , 1977 .
[21] E. Kokubo,et al. High-Accuracy Statistical Simulation of Planetary Accretion: II. Comparison with N-Body Simulation , 2001 .
[22] J. Colwell,et al. A New Mechanism Relevant to the Formation of Planetesimals in the Solar Nebula , 2001 .
[23] A New Condition for the Transition from Runaway to Oligarchic Growth , 2010, 1003.4695.
[24] George W. Wetherill,et al. Accumulation of a swarm of small planetesimals , 1989 .
[25] Jeffrey S. Oishi,et al. Rapid planetesimal formation in turbulent circumstellar disks , 2007, Nature.
[26] Fast Accretion of Small Planetesimals by Protoplanetary Cores , 2003, astro-ph/0311440.
[27] C. Hayashi,et al. Settling and growth of dust particles in a laminar phase of a low-mass solar nebula , 1986 .
[28] J. Blum,et al. Experiments on Sticking, Restructuring, and Fragmentation of Preplanetary Dust Aggregates , 2000 .
[29] William R. Ward,et al. Three-Dimensional Interaction between a Planet and an Isothermal Gaseous Disk. I. Corotation and Lindblad Torques and Planet Migration , 2002 .
[30] Jack J. Lissauer,et al. Accretion of the gaseous envelope of Jupiter around a 5–10 Earth-mass core , 2005 .
[31] Jack J. Lissauer,et al. Nebular gas drag and planetary accretion. II. Planet on an eccentric orbit. , 1995 .
[32] A. Johansen,et al. Prograde rotation of protoplanets by accretion of pebbles in a gaseous environment , 2009, 0910.1524.
[33] S. Inutsuka,et al. ORBITAL EVOLUTION OF A PARTICLE INTERACTING WITH A SINGLE PLANET IN A PROTOPLANETARY DISK , 2008, 0810.5314.
[34] S. Inaba,et al. Planetary Growth with Collisional Fragmentation and Gas Drag , 2010, 1005.2536.
[35] Eiichiro Kokubo,et al. Oligarchic growth of protoplanets , 1996 .
[36] K. Ohtsuki,et al. Accretion Rates of Planetesimals by Protoplanets Embedded in Nebular Gas , 2009, 0908.1622.
[37] J. Lissauer,et al. Accretion rates of protoplanets , 1990 .
[38] K. Ohtsuki. Capture Probability of Colliding Planetesimals: Dynamical Constraints on Accretion of Planets, Satellites, and Ring Particles , 1993 .
[39] Scott J. Kenyon,et al. RAPID FORMATION OF ICY SUPER-EARTHS AND THE CORES OF GAS GIANT PLANETS , 2008, 0811.4665.
[40] D. Davis,et al. Orbital resonances in the solar nebula - Implications for planetary accretion , 1985 .
[41] S. Weidenschilling,et al. Aerodynamics of solid bodies in the solar nebula. , 1977 .
[42] Dust accretion onto high-mass planets , 2006, astro-ph/0610675.
[43] Jack J. Lissauer,et al. Formation of the Giant Planets by Concurrent Accretion of Solids and Gas , 1995 .
[44] V. Safronov,et al. Evolution of the protoplanetary cloud and formation of the earth and the planets , 1972 .
[45] G. Wetherill,et al. Formation of planetary embryos: effects of fragmentation, low relative velocity, and independent variation of eccentricity and inclination. , 1993, Icarus.
[46] H. Takeda,et al. Does the gas flow through a porous dust aggregate help its growth in a protoplanetary disk , 2005 .
[47] A. Johansen,et al. PARTICLE CLUMPING AND PLANETESIMAL FORMATION DEPEND STRONGLY ON METALLICITY , 2009, 0909.0259.
[48] E. Kokubo,et al. Formation of Protoplanets from Planetesimals in the Solar Nebula , 2000 .
[49] C. Dullemond,et al. Dust retention in protoplanetary disks , 2009, 0907.0985.
[50] T. Henning,et al. Dust Sedimentation and Self-sustained Kelvin-Helmholtz Turbulence in Protoplanetary Disk Midplanes , 2005, astro-ph/0512272.
[51] S. Weidenschilling. Formation of the Cores of the Outer Planets , 2005 .
[52] F. Ciesla. Two-dimensional transport of solids in viscous protoplanetary disks , 2008, 0812.3916.
[53] D. Wilner,et al. Large grains in discs around young stars: ATCA observations of WW Chamaeleontis, RU Lupi and CS Chamaeleontis , 2008, 0812.3849.
[54] Planetesimals to protoplanets – II. Effect of debris on terrestrial planet formation , 2009, 0903.2354.
[55] M. Hénon,et al. Satellite encounters. [In circular orbits] , 1986 .