activity
20172021
most citedContacts of Water Ice in Protoplanetary Disks - Laboratory Experiments

189 citations · 310 across the 7 of their papers we have counts for

collaborators

7 papers

astro-ph.EP202118 cited

Growth of Aggregates with Liquid-Like Ice-Shells in Protoplanetary Discs

Grzegorz Musiolik

During the first stages of planet formation, the collision growth of dust aggregates in protoplanetary discs (PPDs) is interrupted at the bouncing barrier. Dust aggregates coated b…

astro-ph.IM20219 cited

Experimental study of clusters in dense granular gas and implications for the particle stopping time in protoplanetary disks

Niclas Schneider, Grzegorz Musiolik, Jonathan E. Kollmer +6

In protoplanetary disks, zones of dense particle configuration promote planet formation. Solid particles in dense clouds alter their motion through collective effects and back reac…

astro-ph.IM201916 cited

ARISE: A granular matter experiment on the International Space Station

Tobias Steinpilz, Grzegorz Musiolik, Maximilian Kruss +8

We developed an experiment to study different aspects of granular matter under microgravity. The 1.5U small experiment was carried out on the International Space Station. About 350…

astro-ph.EP201925 cited

Wind erosion on Mars and other small terrestrial planets

Maximilian Kruss, Grzegorz Musiolik, Tunahan Demirci +2

We carried out wind tunnel experiments on parabolic flights with 100 m Mojave Mars simulant sand. The experiments result in shear stress thresholds and erosion rates for varying…

astro-ph.EP2019189 cited

Contacts of Water Ice in Protoplanetary Disks - Laboratory Experiments

Grzegorz Musiolik, Gerhard Wurm

Water ice is abundant in protoplanetary disks. Its sticking properties are therefore important during phases of collisional growth. In this work, we study the sticking and rolling…

astro-ph.EP201843 cited

Saltation under Martian Gravity and its Influence on the Global Dust Distribution

Grzegorz Musiolik, Maximilian Kruss, Tunahan Demirci +6

Dust and sand motion are a common sight on Mars. Understanding the interaction of atmosphere and Martian soil is fundamental to describe the planet's weather, climate and surface m…