Magnetic-induced force noise in LISA Pathfinder free-falling test masses

Fuente: arXiv
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Hauptverfasser: Armano, M, Audley, H, Baird, J, Binetruy, P, Born, M, Bortoluzzi, D, Castelli, E, Cavalleri, A, Cesarini, A, Cruise, A M, Danzmann, K, Silva, M De Deus, Diepholz, I, Dixon, G, Dolesi, R, Ferraioli, L, Ferroni, V, Fitzsimons, E D, Freschi, M, Gesa, L, Giardini, D, Gibert, F, Giusteri, R, Grimani, C, Grzymisch, J, Harrison, I, Hartig, M S, Heinzel, G, Hewitson, M, Hollington, D, Hoyland, D, Hueller, M, Inchauspé, H, Jennrich, O, Jetzer, P, Karnesis, N, Kaune, B, Korsakova, N, Killow, C J, Liu, L, Lobo, J A, López-Zaragoza, J P, Maarschalkerweerd, R, Mance, D, Martín, V, Martino, J, Martin-Polo, L, Martin-Porqueras, F, McNamara, P W, Mendes, J, Mendes, L, Meshksar, N, Nofrarias, M, Paczkowski, S, Perreur-Lloyd, M, Petiteau, A, Pivato, P, Plagnol, E, Ramos-Castro, J, Reiche, J, Rivas, F, Robertson, D I, Russano, G, Sala, L, Serrano, D, Slutsky, J, Sopuerta, C F, Sumner, T, Texier, D, Thorpe, J I, Vetrugno, D, Vitale, S, Wanner, G, Ward, H, Wass, P, Weber, W J, Wissel, L, Wittchen, A, Zweifel, P
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Veröffentlicht: 2024
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author Armano, M
Audley, H
Baird, J
Binetruy, P
Born, M
Bortoluzzi, D
Castelli, E
Cavalleri, A
Cesarini, A
Cruise, A M
Danzmann, K
Silva, M De Deus
Diepholz, I
Dixon, G
Dolesi, R
Ferraioli, L
Ferroni, V
Fitzsimons, E D
Freschi, M
Gesa, L
Giardini, D
Gibert, F
Giusteri, R
Grimani, C
Grzymisch, J
Harrison, I
Hartig, M S
Heinzel, G
Hewitson, M
Hollington, D
Hoyland, D
Hueller, M
Inchauspé, H
Jennrich, O
Jetzer, P
Karnesis, N
Kaune, B
Korsakova, N
Killow, C J
Liu, L
Lobo, J A
López-Zaragoza, J P
Maarschalkerweerd, R
Mance, D
Martín, V
Martino, J
Martin-Polo, L
Martin-Porqueras, F
McNamara, P W
Mendes, J
Mendes, L
Meshksar, N
Nofrarias, M
Paczkowski, S
Perreur-Lloyd, M
Petiteau, A
Pivato, P
Plagnol, E
Ramos-Castro, J
Reiche, J
Rivas, F
Robertson, D I
Russano, G
Sala, L
Serrano, D
Slutsky, J
Sopuerta, C F
Sumner, T
Texier, D
Thorpe, J I
Vetrugno, D
Vitale, S
Wanner, G
Ward, H
Wass, P
Weber, W J
Wissel, L
Wittchen, A
Zweifel, P
author_facet Armano, M
Audley, H
Baird, J
Binetruy, P
Born, M
Bortoluzzi, D
Castelli, E
Cavalleri, A
Cesarini, A
Cruise, A M
Danzmann, K
Silva, M De Deus
Diepholz, I
Dixon, G
Dolesi, R
Ferraioli, L
Ferroni, V
Fitzsimons, E D
Freschi, M
Gesa, L
Giardini, D
Gibert, F
Giusteri, R
Grimani, C
Grzymisch, J
Harrison, I
Hartig, M S
Heinzel, G
Hewitson, M
Hollington, D
Hoyland, D
Hueller, M
Inchauspé, H
Jennrich, O
Jetzer, P
Karnesis, N
Kaune, B
Korsakova, N
Killow, C J
Liu, L
Lobo, J A
López-Zaragoza, J P
Maarschalkerweerd, R
Mance, D
Martín, V
Martino, J
Martin-Polo, L
Martin-Porqueras, F
McNamara, P W
Mendes, J
Mendes, L
Meshksar, N
Nofrarias, M
Paczkowski, S
Perreur-Lloyd, M
Petiteau, A
Pivato, P
Plagnol, E
Ramos-Castro, J
Reiche, J
Rivas, F
Robertson, D I
Russano, G
Sala, L
Serrano, D
Slutsky, J
Sopuerta, C F
Sumner, T
Texier, D
Thorpe, J I
Vetrugno, D
Vitale, S
Wanner, G
Ward, H
Wass, P
Weber, W J
Wissel, L
Wittchen, A
Zweifel, P
contents LISA Pathfinder was a mission designed to test key technologies required for gravitational wave detection in space. Magnetically driven forces play a key role in the instrument sensitivity in the low-frequency regime, which corresponds to the measurement band of interest for future space-borne gravitational wave observatories. Magnetic-induced forces couple to the test mass motion, introducing a contribution to the relative acceleration noise between the free falling test masses. In this Letter we present the first complete estimate of this term of the instrument performance model. Our results set the magnetic-induced acceleration noise during the February 2017 noise run of $\rm 0.25_{-0.08}^{+0.15}\,fm\,s^{-2}/\sqrt{Hz}$ at 1 mHz and $\rm 1.01_{-0.24}^{+0.73}\, fm\,s^{-2}/\sqrt{Hz}$ at 0.1 mHz. We also discuss how the non-stationarities of the interplanetary magnetic field can affect these values during extreme space weather conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2407_04427
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Magnetic-induced force noise in LISA Pathfinder free-falling test masses
Armano, M
Audley, H
Baird, J
Binetruy, P
Born, M
Bortoluzzi, D
Castelli, E
Cavalleri, A
Cesarini, A
Cruise, A M
Danzmann, K
Silva, M De Deus
Diepholz, I
Dixon, G
Dolesi, R
Ferraioli, L
Ferroni, V
Fitzsimons, E D
Freschi, M
Gesa, L
Giardini, D
Gibert, F
Giusteri, R
Grimani, C
Grzymisch, J
Harrison, I
Hartig, M S
Heinzel, G
Hewitson, M
Hollington, D
Hoyland, D
Hueller, M
Inchauspé, H
Jennrich, O
Jetzer, P
Karnesis, N
Kaune, B
Korsakova, N
Killow, C J
Liu, L
Lobo, J A
López-Zaragoza, J P
Maarschalkerweerd, R
Mance, D
Martín, V
Martino, J
Martin-Polo, L
Martin-Porqueras, F
McNamara, P W
Mendes, J
Mendes, L
Meshksar, N
Nofrarias, M
Paczkowski, S
Perreur-Lloyd, M
Petiteau, A
Pivato, P
Plagnol, E
Ramos-Castro, J
Reiche, J
Rivas, F
Robertson, D I
Russano, G
Sala, L
Serrano, D
Slutsky, J
Sopuerta, C F
Sumner, T
Texier, D
Thorpe, J I
Vetrugno, D
Vitale, S
Wanner, G
Ward, H
Wass, P
Weber, W J
Wissel, L
Wittchen, A
Zweifel, P
Instrumentation and Methods for Astrophysics
General Relativity and Quantum Cosmology
LISA Pathfinder was a mission designed to test key technologies required for gravitational wave detection in space. Magnetically driven forces play a key role in the instrument sensitivity in the low-frequency regime, which corresponds to the measurement band of interest for future space-borne gravitational wave observatories. Magnetic-induced forces couple to the test mass motion, introducing a contribution to the relative acceleration noise between the free falling test masses. In this Letter we present the first complete estimate of this term of the instrument performance model. Our results set the magnetic-induced acceleration noise during the February 2017 noise run of $\rm 0.25_{-0.08}^{+0.15}\,fm\,s^{-2}/\sqrt{Hz}$ at 1 mHz and $\rm 1.01_{-0.24}^{+0.73}\, fm\,s^{-2}/\sqrt{Hz}$ at 0.1 mHz. We also discuss how the non-stationarities of the interplanetary magnetic field can affect these values during extreme space weather conditions.
title Magnetic-induced force noise in LISA Pathfinder free-falling test masses
topic Instrumentation and Methods for Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2407.04427