Micrometeoroid Events in LISA Pathfinder
Abstract
The zodiacal dust complex, a population of dust and small particles that pervades the Solar System, provides important insight into the formation and dynamics of planets, comets, asteroids, and other bodies. Here we present a new set of data obtained using a novel technique: direct measurements of momentum transfer to a spacecraft from individual particle impacts. This technique is made possible by the extreme precision of the instruments flown on the LISA Pathfinder spacecraft, a technology demonstrator for a future space-based gravitational wave observatory that operated near the first Sun-Earth Lagrange point from early 2016 through Summer of 2017. Using a simple model of the impacts and knowledge of the control system, we show that it is possible to detect impacts and measure properties such as the transferred momentum (related to the particle's mass and velocity), direction of travel, and location of impact on the spacecraft. In this paper, we present the results of a systematic search for impacts during 4348 hours of Pathfinder data. We report a total of 54 candidates with momenta ranging from 0.2 to 230. We furthermore make a comparison of these candidates with models of micrometeoroid populations in the inner solar system including those resulting from Jupiter-family comets, Oort-cloud comets, Hailey-type comets, and Asteroids. We find that our measured population is consistent with a population dominated by Jupiter-family comets with some evidence for a smaller contribution from Hailey-type comets. This is in agreement with consensus models of the zodiacal dust complex in the momentum range sampled by LISA Pathfinder.
Cite
@article{arxiv.1905.02765,
title = {Micrometeoroid Events in LISA Pathfinder},
author = {James Ira Thorpe and Jacob Slutsky and John Baker and Tyson Littenberg and Sophie Hourihane and Nicole Pagane and Petr Pokorny and Diego Janches and Michele Armano and Heather Audley and G. Auger and Jonathan Baird and Massimo Bassan and Pierre Binetruy and Michael Born and D. Bortoluzzi and N. Brandt and M. Caleno and A Cavalleri and A Cesarini and A. M. Cruise and K. Danzmann and M. de Deus Silva and R. De Rosa and L. Di Fiore and I. Diepholz and G. Dixon and R. Dolesi and N. Dunbar and L. Ferraioli and V. Ferroni and E. Fitzsimons and R. Flatscher and M. Freschi and C. Garcia Marirrodriga and R. Gerndt and L. Gesa and F. Gibert and D. Giardini and R. Giusteri and A. Grado and C. Grimani and J. Gryzmisch and I. Harrison and G. Heinzel and M. Hewitson and D. Hollington and D. Hoyland and M. Hueller and H. Inchauspe and O. Jennrich and P. Jetzer and B. Johlander and N. Karnesis and B. Kaune and N. Korsakova and C. Killow and J. A. Lobo and I. Lloro and L. Liu and J. P. Lopez-Zaragoza and R. Maarschalkerweerd and D. Mance and V. Martin and L. Martin-Polo and J. Martino and F. Martin-Porqueras and S. Madden and I. Mateos and P. W. McNamara and J. Mendes and L. Mendes and M. Nofarias and S. Paczkowski and M. Perreur-Lloyd and A. Petiteau and P. Pivato and E. Plagnol and P. Prat and U. Ragnit and J. Ramos-Castro and J. Reiche and D. Robertson and H. Rozemeijer and F. Rivas and G. Russano and P. Sarra and A. Schleicher and D. Shaul and C. Soperta and R. Stanga and T. Sumner and D. Texier and M. Trobs and D. Vetrungno and S. Vitale and G. Wanner and H. Ward and P. Wass and D. Wealthy and W. J. Weber and L. Wissel and A. Wittchen and A. Zambotti and C. Zanoni and T. Ziegler and P. Zweifel},
journal= {arXiv preprint arXiv:1905.02765},
year = {2019}
}
Comments
22 pages, 14 figures, accepted in ApJ