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  Micrometeoroid Events in LISA Pathfinder

Thorpe, J. I., Slutsky, J., Baker, J., Littenberg, T., Hourihane, S., Pagane, N., et al. (2019). Micrometeoroid Events in LISA Pathfinder. The Astrophysical Journal, 883 (1): 53. doi:10.3847/1538-4357/ab3649.

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Thorpe, James Ira, Autor
Slutsky, Jacob, Autor
Baker, John, Autor
Littenberg, Tyson, Autor
Hourihane, Sophie, Autor
Pagane, Nicole, Autor
Pokorny, Petr, Autor
Janches, Diego, Autor
Armano, Michele, Autor
Audley, Heather1, Autor           
Auger, G., Autor
Baird, Jonathan, Autor
Bassan, Massimo, Autor
Binetruy, Pierre, Autor
Born, Michael1, Autor           
Bortoluzzi, D., Autor
Brandt, N., Autor
Caleno, M., Autor
Cavalleri, A, Autor
Cesarini, A, Autor
Cruise, A. M., AutorDanzmann, Karsten1, Autor           Silva, M. de Deus, AutorDe Rosa, R., AutorDi Fiore, L., AutorDiepholz, Ingo1, Autor           Dixon, G., AutorDolesi, R., AutorDunbar, N., AutorFerraioli, L., AutorFerroni, V., AutorFitzsimons, E., AutorFlatscher, R., AutorFreschi, M., AutorMarirrodriga, C. Garcia, AutorGerndt, R., AutorGesa, L., AutorGibert, F., AutorGiardini, D., AutorGiusteri, R., AutorGrado, A., AutorGrimani, C., AutorGryzmisch, J., AutorHarrison, I., AutorHeinzel, Gerhard1, Autor           Hewitson, Martin2, Autor           Hollington, D., AutorHoyland, D., AutorHueller, M., AutorInchauspe, H., AutorJennrich, O., AutorJetzer, P., AutorJohlander, B., AutorKarnesis , N.1, AutorKaune, Brigitte1, Autor           Korsakova , N.1, AutorKillow, C., AutorLobo, J. A., AutorLloro, I., AutorLiu, L., AutorLopez-Zaragoza, J. P., AutorMaarschalkerweerd, R., AutorMance, D., AutorMartin, V., AutorMartin-Polo, L., AutorMartino, J., AutorMartin-Porqueras, F., AutorMadden, S., AutorMateos, I., AutorMcNamara, P. W., AutorMendes, J., AutorMendes, L., AutorNofarias, M., AutorPaczkowski, S., AutorPerreur-Lloyd, M., AutorPetiteau, A., AutorPivato, P., AutorPlagnol, E., AutorPrat, P., AutorRagnit, U., AutorRamos-Castro, J., AutorReiche, Jens1, Autor           Robertson, D., AutorRozemeijer, H., AutorRivas, F., AutorRussano, G., AutorSarra, P., AutorSchleicher, A., AutorShaul, D., AutorSoperta, C., AutorStanga, R., AutorSumner, T., AutorTexier, D., AutorTrobs, M., AutorVetrungno, D., AutorVitale, S., AutorWanner, G., AutorWard, H., AutorWass, P., AutorWealthy, D., AutorWeber, W. J., AutorWissel, Lennart1, Autor           Wittchen, Andreas1, Autor           Zambotti, A., AutorZanoni, C., AutorZiegler, T., AutorZweifel, P., Autor mehr..
Affiliations:
1Laser Interferometry & Gravitational Wave Astronomy, AEI-Hannover, MPI for Gravitational Physics, Max Planck Society, ou_24010              
2Observational Relativity and Cosmology, AEI-Hannover, MPI for Gravitational Physics, Max Planck Society, ou_24011              

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Schlagwörter: Astrophysics, Earth and Planetary Astrophysics, astro-ph.EP
 Zusammenfassung: 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$\,\mu\textrm{Ns}$ to
230$\,\mu\textrm{Ns}$. 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.

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 Datum: 2019-05-072019-10-022019
 Publikationsstatus: Erschienen
 Seiten: 22 pages, 14 figures, accepted in ApJ
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: -
 Art des Abschluß: -

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Titel: The Astrophysical Journal
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: -
Seiten: - Band / Heft: 883 (1) Artikelnummer: 53 Start- / Endseite: - Identifikator: -