TriPoDPy: 1D Tri-Population size distributions forDust evolution in protoplanetary disks

Fuente: arXiv
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Main Authors: Kaufmann, Nicolas Leo, Pfeil, Thomas, Stammler, Sebastian, Penzlin, Anna, Paetzold, Sandro Christian, Birnstiel, Til
Format: Preprint
Published: 2025
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author Kaufmann, Nicolas Leo
Pfeil, Thomas
Stammler, Sebastian
Penzlin, Anna
Paetzold, Sandro Christian
Birnstiel, Til
author_facet Kaufmann, Nicolas Leo
Pfeil, Thomas
Stammler, Sebastian
Penzlin, Anna
Paetzold, Sandro Christian
Birnstiel, Til
contents TriPoDPy is a code simulating the dust evolution, including dust growth and dynamics in protoplanetary disks using the parametric dust model presented in (Pfeil et al., 2024). The simulation evolves a dust distribution in a one-dimensional grid in the radial direction. It's written in Python and the core routines are implemented in Fortran90. The code not only solves for the evolution of the dust but also the gas disk with the canonical alpha-description (Shakura & Sunyaev, 1973). In addition to the original model, we added descriptions of tracers for the dust and gas, which could be used for compositional tracking of additional components.
format Preprint
id arxiv_https___arxiv_org_abs_2511_20764
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle TriPoDPy: 1D Tri-Population size distributions forDust evolution in protoplanetary disks
Kaufmann, Nicolas Leo
Pfeil, Thomas
Stammler, Sebastian
Penzlin, Anna
Paetzold, Sandro Christian
Birnstiel, Til
Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
TriPoDPy is a code simulating the dust evolution, including dust growth and dynamics in protoplanetary disks using the parametric dust model presented in (Pfeil et al., 2024). The simulation evolves a dust distribution in a one-dimensional grid in the radial direction. It's written in Python and the core routines are implemented in Fortran90. The code not only solves for the evolution of the dust but also the gas disk with the canonical alpha-description (Shakura & Sunyaev, 1973). In addition to the original model, we added descriptions of tracers for the dust and gas, which could be used for compositional tracking of additional components.
title TriPoDPy: 1D Tri-Population size distributions forDust evolution in protoplanetary disks
topic Instrumentation and Methods for Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2511.20764