Raymond, Sean N.; Izidoro, Andre; Bitsch, Bertram; Jacobsen, Seth A. Did Jupiter's core form in the innermost parts of the Sun's protoplanetary disc?. Monthly Notices of the Royal Astronomical Society. 2016, 458 (3): 2962–2972. Bibcode:2016MNRAS.458.2962R. arXiv:1602.06573. doi:10.1093/mnras/stw431.
Pierens, Arnaud; Raymond, Sean N.; Nesvorny, David; Morbidelli, Alessandro. Outward Migration of Jupiter and Saturn in 3:2 or 2:1 Resonance in Radiative Disks: Implications for the Grand Tack and Nice models. The Astrophysical Journal Letters: L11. Bibcode:2014ApJ...795L..11P. arXiv:1410.0543. doi:10.1088/2041-8205/795/1/L11.
M. Brož, M.; Chrenko, O.; Nesvorný, D.; Dauphas, N. Early terrestrial planet formation by torque-driven convergent migration of planetary embryos. Nature Astronomy. 2021, 5 (9): 898–902. S2CID 236317507. arXiv:2109.11385. doi:10.1038/s41550-021-01383-3.
Ogihara, Masahiro; Kobayashi, Hiroshi; Inutsuka, Shu-ichiro; Suzuki, Takeru K. Formation of terrestrial planets in disks evolving via disk winds and implications for the origin of the solar system's terrestrial planets. Astronomy & Astrophysics. 2015, 579: A65. Bibcode:2015A&A...579A..65O. S2CID 119110384. arXiv:1505.01086. doi:10.1051/0004-6361/201525636.
Lambrechts, Michiel; Morbidelli, Alessandro; Jacobson, Seth A.; Johansen, Anders; Bitsch, Bertram; Izidoro, Andre; Raymond, Sean N. Formation of planetary systems by pebble accretion and migration: How the radial pebble flux determines a terrestrial-planet or super-Earth growth mode. Astronomy & Astrophysics. 2019, A83: 627. Bibcode:2019A&A...627A..83L. S2CID 119470314. arXiv:1902.08694. doi:10.1051/0004-6361/201834229.
Clement, Matthew S.; Chambers, John E.; Jackson, Alan P. Dynamical Avenues for Mercury's Origin. I. The Lone Survivor of a Primordial Generation of Short-period Protoplanets. The Astronomical Journal. 2021, 161 (5): 240. S2CID 233387902. arXiv:2104.11246. doi:10.3847/1538-3881/abf09f.
Clement, Matthew S.; Chamber, John E. Dynamical Avenues for Mercury's Origin. II. In Situ Formation in the Inner Terrestrial Disk. The Astronomical Journal. 2021, 162 (1): 3. S2CID 233388200. arXiv:2104.11252. doi:10.3847/1538-3881/abfb6c.
Raymond, Sean N.; Izidoro, Andre; Bitsch, Bertram; Jacobsen, Seth A. Did Jupiter's core form in the innermost parts of the Sun's protoplanetary disc?. Monthly Notices of the Royal Astronomical Society. 2016, 458 (3): 2962–2972. Bibcode:2016MNRAS.458.2962R. arXiv:1602.06573. doi:10.1093/mnras/stw431.
Pierens, Arnaud; Raymond, Sean N.; Nesvorny, David; Morbidelli, Alessandro. Outward Migration of Jupiter and Saturn in 3:2 or 2:1 Resonance in Radiative Disks: Implications for the Grand Tack and Nice models. The Astrophysical Journal Letters: L11. Bibcode:2014ApJ...795L..11P. arXiv:1410.0543. doi:10.1088/2041-8205/795/1/L11.
M. Brož, M.; Chrenko, O.; Nesvorný, D.; Dauphas, N. Early terrestrial planet formation by torque-driven convergent migration of planetary embryos. Nature Astronomy. 2021, 5 (9): 898–902. S2CID 236317507. arXiv:2109.11385. doi:10.1038/s41550-021-01383-3.
Ogihara, Masahiro; Kobayashi, Hiroshi; Inutsuka, Shu-ichiro; Suzuki, Takeru K. Formation of terrestrial planets in disks evolving via disk winds and implications for the origin of the solar system's terrestrial planets. Astronomy & Astrophysics. 2015, 579: A65. Bibcode:2015A&A...579A..65O. S2CID 119110384. arXiv:1505.01086. doi:10.1051/0004-6361/201525636.
Lambrechts, Michiel; Morbidelli, Alessandro; Jacobson, Seth A.; Johansen, Anders; Bitsch, Bertram; Izidoro, Andre; Raymond, Sean N. Formation of planetary systems by pebble accretion and migration: How the radial pebble flux determines a terrestrial-planet or super-Earth growth mode. Astronomy & Astrophysics. 2019, A83: 627. Bibcode:2019A&A...627A..83L. S2CID 119470314. arXiv:1902.08694. doi:10.1051/0004-6361/201834229.
Clement, Matthew S.; Chambers, John E.; Jackson, Alan P. Dynamical Avenues for Mercury's Origin. I. The Lone Survivor of a Primordial Generation of Short-period Protoplanets. The Astronomical Journal. 2021, 161 (5): 240. S2CID 233387902. arXiv:2104.11246. doi:10.3847/1538-3881/abf09f.
Clement, Matthew S.; Chamber, John E. Dynamical Avenues for Mercury's Origin. II. In Situ Formation in the Inner Terrestrial Disk. The Astronomical Journal. 2021, 162 (1): 3. S2CID 233388200. arXiv:2104.11252. doi:10.3847/1538-3881/abfb6c.
Raymond, Sean N.; Izidoro, Andre; Bitsch, Bertram; Jacobsen, Seth A. Did Jupiter's core form in the innermost parts of the Sun's protoplanetary disc?. Monthly Notices of the Royal Astronomical Society. 2016, 458 (3): 2962–2972. Bibcode:2016MNRAS.458.2962R. arXiv:1602.06573. doi:10.1093/mnras/stw431.
Pierens, Arnaud; Raymond, Sean N.; Nesvorny, David; Morbidelli, Alessandro. Outward Migration of Jupiter and Saturn in 3:2 or 2:1 Resonance in Radiative Disks: Implications for the Grand Tack and Nice models. The Astrophysical Journal Letters: L11. Bibcode:2014ApJ...795L..11P. arXiv:1410.0543. doi:10.1088/2041-8205/795/1/L11.
D'Angelo, G.; Marzari, F. Sustained Accretion on Gas Giants Surrounded by Low-Turbulence Circumplanetary Disks. American Astronomical Society, DPS meeting #47. 2015,. id.418.06. Bibcode:2015DPS....4741806D.
Marzari, F.; D'Angelo, G. Mass Growth and Evolution of Giant Planets on Resonant Orbits. American Astronomical Society, DPS meeting #45. 2013,. id.113.04. Bibcode:2013DPS....4511304M.
Barclay, Thomas; Quintana, Elisa V. In-situ Formation of Mars-like Planets – Results from Hundreds of N-body Simulations That Include Collisional Fragmentaion. American Astronomical Society, DPS Meeting #47. 2015,. #507.06: 507.06. Bibcode:2015DPS....4750706B.
Ogihara, Masahiro; Kobayashi, Hiroshi; Inutsuka, Shu-ichiro; Suzuki, Takeru K. Formation of terrestrial planets in disks evolving via disk winds and implications for the origin of the solar system's terrestrial planets. Astronomy & Astrophysics. 2015, 579: A65. Bibcode:2015A&A...579A..65O. S2CID 119110384. arXiv:1505.01086. doi:10.1051/0004-6361/201525636.
Lambrechts, Michiel; Morbidelli, Alessandro; Jacobson, Seth A.; Johansen, Anders; Bitsch, Bertram; Izidoro, Andre; Raymond, Sean N. Formation of planetary systems by pebble accretion and migration: How the radial pebble flux determines a terrestrial-planet or super-Earth growth mode. Astronomy & Astrophysics. 2019, A83: 627. Bibcode:2019A&A...627A..83L. S2CID 119470314. arXiv:1902.08694. doi:10.1051/0004-6361/201834229.
M. Brož, M.; Chrenko, O.; Nesvorný, D.; Dauphas, N. Early terrestrial planet formation by torque-driven convergent migration of planetary embryos. Nature Astronomy. 2021, 5 (9): 898–902. S2CID 236317507. arXiv:2109.11385. doi:10.1038/s41550-021-01383-3.
Ogihara, Masahiro; Kobayashi, Hiroshi; Inutsuka, Shu-ichiro; Suzuki, Takeru K. Formation of terrestrial planets in disks evolving via disk winds and implications for the origin of the solar system's terrestrial planets. Astronomy & Astrophysics. 2015, 579: A65. Bibcode:2015A&A...579A..65O. S2CID 119110384. arXiv:1505.01086. doi:10.1051/0004-6361/201525636.
Lambrechts, Michiel; Morbidelli, Alessandro; Jacobson, Seth A.; Johansen, Anders; Bitsch, Bertram; Izidoro, Andre; Raymond, Sean N. Formation of planetary systems by pebble accretion and migration: How the radial pebble flux determines a terrestrial-planet or super-Earth growth mode. Astronomy & Astrophysics. 2019, A83: 627. Bibcode:2019A&A...627A..83L. S2CID 119470314. arXiv:1902.08694. doi:10.1051/0004-6361/201834229.
Clement, Matthew S.; Chambers, John E.; Jackson, Alan P. Dynamical Avenues for Mercury's Origin. I. The Lone Survivor of a Primordial Generation of Short-period Protoplanets. The Astronomical Journal. 2021, 161 (5): 240. S2CID 233387902. arXiv:2104.11246. doi:10.3847/1538-3881/abf09f.
Clement, Matthew S.; Chamber, John E. Dynamical Avenues for Mercury's Origin. II. In Situ Formation in the Inner Terrestrial Disk. The Astronomical Journal. 2021, 162 (1): 3. S2CID 233388200. arXiv:2104.11252. doi:10.3847/1538-3881/abfb6c.