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Study of type II migration under the framework of the disk instability model for giant planet formation
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Mutual Inclination of Ultra-short-period Planets with Time-varying Stellar J
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Kundan Kadam, Eduard Vorobyov and Shantanu Basu Monthly Notices of the Royal Astronomical Society 516(3) 4448 (2022) https://doi.org/10.1093/mnras/stac2455
Trapping (sub-)Neptunes similar to TOI-216b at the inner disk rim
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Erik A. Petigura, James G. Rogers, Howard Isaacson, James E. Owen, Adam L. Kraus, Joshua N. Winn, Mason G. MacDougall, Andrew W. Howard, Benjamin Fulton, Molly R. Kosiarek, Lauren M. Weiss, Aida Behmard and Sarah Blunt The Astronomical Journal 163(4) 179 (2022) https://doi.org/10.3847/1538-3881/ac51e3
Dust accumulation near the magnetospheric truncation of protoplanetary discs around T Tauri stars
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A bright inner disk and structures in the transition disk around the very low-mass star CIDA 1
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The Effect of a Strong Pressure Bump in the Sun’s Natal Disk: Terrestrial Planet Formation via Planetesimal Accretion Rather than Pebble Accretion
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Drifting inwards in protoplanetary discs I Sticking of chondritic dust at increasing temperatures
Formation of planetary populations − II. Effects of initial disc size and radial dust drift
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The eccentricity distribution of giant planets and their relation to super-Earths in the pebble accretion scenario
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Planet formation by pebble accretion in ringed disks
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