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Debanjan Sengupta
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Growth and Settling of Dust Particles in Protoplanetary Nebulae: Implications for Opacity, Thermal Profile, and Gravitational Instability
D Sengupta, SE Dodson-Robinson, Y Hasegawa, NJ Turner
The Astrophysical Journal 874 (1), 26, 2019
172019
Turbulence in Particle-laden Midplane Layers of Planet-forming Disks
D Sengupta, OM Umurhan
The Astrophysical Journal 942 (2), 74, 2023
62023
Depletion of Moderately Volatile Elements by Open-system Loss in the Early Solar Nebula
D Sengupta, PR Estrada, JN Cuzzi, M Humayun
The Astrophysical Journal 932 (2), 82, 2022
42022
Planet formation: The case for large efforts on the computational side
W Lyra, T Haworth, B Bitsch, S Casassus, N Cuello, T Currie, A Gáspár, ...
arXiv preprint arXiv:1903.04546, 2019
32019
Magnetically Driven Turbulence in the Inner Regions of Protoplanetary Disks
DG Rea, JB Simon, D Carrera, G Lesur, W Lyra, D Sengupta, CC Yang, ...
arXiv preprint arXiv:2404.07265, 2024
2024
Better Understanding Turbulence in Planet Forming Disks: A New Prescription for Future Observations
OM Umurhan, D Sengupta, JN Cuzzi, W Lyra
LPI Contributions 3040, 2768, 2024
2024
A Solution for the Density Dichotomy Problem of Kuiper Belt Objects with Multispecies Streaming Instability and Pebble Accretion
MH Cañas, W Lyra, D Carrera, L Krapp, D Sengupta, JB Simon, ...
The Planetary Science Journal 5 (2), 55, 2024
2024
Length and Velocity Scales in Protoplanetary Disk Turbulence
D Sengupta, JN Cuzzi, OM Umurhan, W Lyra
arXiv preprint arXiv:2402.15475, 2024
2024
Evidence for Turbulent Concentration in Particle-Laden Midplane Layers of Planet-Forming Disks: Preliminary Findings
OM Umurhan, PR Estrada, D Sengupta
54th Lunar and Planetary Science Conference (LPSC), 2023
2023
Depletion of Moderately Volatile Elements in Chondrites by Open-System Loss in the Early Solar Nebula
D Sengupta, PR Estrada, JN Cuzzi, M Humayun
53rd Lunar and Planetary Science Conference 2678, 2463, 2022
2022
Are the First Planetesimals Born in Turbulence?
OM Umurhan, PE Estrada, D Sengupta
52nd Lunar and Planetary Science Conference, 2243, 2021
2021
New Insights on Streaming Instability in a Laminar Disk
D Sengupta, O Umurhan
American Astronomical Society Meeting Abstracts 53 (1), 213.06, 2021
2021
Depletion of Moderately Volatile Elements by Wind-Driven Mass-Loss in the Early Solar Nebula
D Sengupta, P Estrada, J Cuzzi
AAS/Division for Planetary Sciences Meeting Abstracts 52 (6), 504.01, 2020
2020
Depletion of Moderately Volatile Elements by Disk Winds from the Solar Nebula
D Sengupta, P Estrada, J Cuzzi
51st Annual Lunar and Planetary Science Conference, 2994, 2020
2020
Planet formation in a dusty disk: effects of collisional dust growth and dynamics
D Sengupta
University of Delaware, 2019
2019
Global Dust Modeling in a Planet Forming Disk: Implications for Opacity, Thermal Profile, and Gravitational Instability.
D Sengupta, NJ Turner, J MacDonald
AAS/Division for Planetary Sciences Meeting Abstracts# 50 50, 101.09 D, 2018
2018
Dust Growth and Dynamics in Protoplanetary Nebulae: Implications for Opacity, Thermal Profile and Gravitational Instability
D Sengupta, SE Dodson-Robinson, Y Hasegawa, NJ Turner
arXiv preprint arXiv:1808.03016, 2018
2018
Grain Growth and Settling: An Implication for Disk Instability and Giant Planet Formation
D Sengupta, S Dodson-Robinson
AAS/Division for Planetary Sciences Meeting Abstracts# 48 48, 119.05, 2016
2016
Formation of Giant Planets by Gravitational Instability in Layered Accretion Disk: A Study on Dust Settling
D Sengupta
American Astronomical Society Meeting Abstracts# 225 225, 257.20, 2015
2015
Depletion of Moderately Volatile Elements by Open-system Loss in the Early Solar Nebula
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