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Debanjan Sengupta
Debanjan Sengupta
在 nmsu.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
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
92023
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
72022
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
42024
Length and Velocity Scales in Protoplanetary Disk Turbulence
D Sengupta, JN Cuzzi, OM Umurhan, W Lyra
The Astrophysical Journal 966 (1), 90, 2024
32024
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
22024
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
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 237, 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
Fifty‐Two Electrochemists Talk on Better Coatings for Metals
GR Finlay, KE Spear, MD Allendorf, ES Photoelectric, BJ AnthonyTwarog, ...
Journal of The Electrochemical Society, 182C, 1967
1967
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