activity
20172020
most citedNanoRocks: Design and Performance of an Experiment Studying Planet Formation on the International Space Station

9 citations · 9 across the 1 of their papers we have counts for

collaborators

5 papers

astro-ph.IM2020

Lunar Volatiles and Solar System Science

Parvathy Prem, Ákos Kereszturi, Ariel N. Deutsch +38

Understanding the origin and evolution of the lunar volatile system is not only compelling lunar science, but also fundamental Solar System science. This white paper (submitted to…

astro-ph.EP2020

Regolith behavior under asteroid-level gravity conditions: Low-velocity impacts into mm- and cm-sized grain targets

J. Brisset, C. Cox, S. Anderson +5

In situ observations of small asteroids show that surfaces covered by boulders and coarse terrain are frequent on such bodies. Regolith grain sizes have distributions on approximat…

astro-ph.EP2019

Multi-Particle Collisions in Microgravity: Coefficient of Restitution and Sticking Threshold for Systems of Mm-Sized Particles

J. Brisset, T. Miletich, J. Metzger +3

The current model of planet formation lacks a good understanding of the growth of dust particles inside the protoplanetary disk beyond mm sizes. In order to investigate the low-vel…

astro-ph.EP2018

Regolith behavior under asteroid-level gravity conditions: low-velocity impact experiments

Julie Brisset, Joshua E. Colwell, Adrienne Dove +3

The dusty regolith covering the surfaces of asteroids and planetary satellites differs in size, shape, and composition from terrestrial soil particles and is subject to very differ…

astro-ph.EP20179 cited

NanoRocks: Design and Performance of an Experiment Studying Planet Formation on the International Space Station

J. Brisset, J. Colwell, A. Dove +1

In an effort to better understand the early stages of planet formation, we have developed a 1.5U payload that flew on the International Space Station (ISS) in the NanoRacks NanoLab…