Planetary Research Jobs

Job announcements for planetary science

Doctoral Researcher in Planet Formation with J. Drążkowska

Category: Ph.D.

Institution: Max Planck Institute for Solar System Research

Department: International Max Planck Research School for Solar System Science at the University of Göttingen and at TU Braunschweig

Location: Göttingen, Germany

Work arrangement: In person

Duration: 3,5 years

Salary: https://www.mps.mpg.de/phd/funding

Application deadline: 2026-10-01

Start date: flexible

Official announcement:

Posted: 2026-08-06

Posted by: 0000-0002-5830-837X

Job Description

PhD project in Planet Formation

Vertically resolved modelling of dust evolution in a protoplanetary disk in the first comprehensive model that connects all stages of planet formation

A full planetary dust disk torus to the left, and a simulation box with a few individual dust particle drawings to the right.PhD project in Planet Formation with J. Drążkowska

The Planet Formation Group is offering a PhD opportunity focused on vertically resolved modelling of dust evolution in a protoplanetary disk. Our research aims to build the first comprehensive model that connects all stages of planet formation, from micron-sized dust grains to fully formed planets, with a unique emphasis on leveraging evidence from Solar System materials.

Dust coagulation and transport are typically studied in a 1-dimensional framework, as most of the dust mass is confined to the protoplanetary disk midplane. However, scattered-light observations show that many disks are vertically puffed up and their surfaces exhibit substructures different from those seen at millimeter wavelengths. Our group has been developing the publicly available 2-D Monte Carlo code mcdust, which resolves dust evolution in both radial and vertical dimensions. This project assumes further development of the mcdust code in order to address disk vertical structure and its interplay with the midplane. Depending on the interests of the candidate, the project may include:

  1. Self-consistent thermochemical modeling, for example using the Dust and Lines code (DALI) to investigate the feedback between disk thermal structure and dust composition and evolution.
  2. Including external disk photoevaporation, for example using the Python Utility For Fuv Irradiated disc deNsities (PUFFIN) to study the formation of the youngest planetesimals and comets.
  3. Including dust aggregate electrostatic charging and its impact on dust coagulation.

Due to the nature of this project, preference will be given to candidates with experience in Fortran and Python code development.

Planet formation research group at MPS

Application and admission to the IMPRS Solar System School

IMPRS PhD online application system