We report the first results of the LISA Pathfinder in-flight experiment. The results demonstrate that two free-falling reference test masses, such as those needed for a space-based gravitational wave observatory like LISA, can be put in free fall with a relative acceleration noise with a square root of the power spectral density of 5.2±0.1  fm s^-2/sqrt[Hz], or (0.54±0.01)×10^-15  g/sqrt[Hz], with g the standard gravity, for frequencies between 0.7 and 20 mHz. This value is lower than the LISA Pathfinder requirement by more than a factor 5 and within a factor 1.25 of the requirement for the LISA mission, and is compatible with Brownian noise from viscous damping due to the residual gas surrounding the test masses. Above 60 mHz the acceleration noise is dominated by interferometer displacement readout noise at a level of (34.8±0.3)  fm/sqrt[Hz], about 2 orders of magnitude better than requirements. At f≤0.5  mHz we observe a low-frequency tail that stays below 12  fm s^-2/sqrt[Hz] down to 0.1 mHz. This performance would allow for a space-based gravitational wave observatory with a sensitivity close to what was originally foreseen for LISA.

Armano, M., Audley, H., Auger, G., Baird, J., Bassan, M., Binetruy, P., et al. (2016). Sub-Femto- g Free Fall for Space-Based Gravitational Wave Observatories: LISA Pathfinder Results. PHYSICAL REVIEW LETTERS, 116(23), 231101 [10.1103/PhysRevLett.116.231101].

Sub-Femto- g Free Fall for Space-Based Gravitational Wave Observatories: LISA Pathfinder Results

BASSAN, MASSIMO;
2016-06-07

Abstract

We report the first results of the LISA Pathfinder in-flight experiment. The results demonstrate that two free-falling reference test masses, such as those needed for a space-based gravitational wave observatory like LISA, can be put in free fall with a relative acceleration noise with a square root of the power spectral density of 5.2±0.1  fm s^-2/sqrt[Hz], or (0.54±0.01)×10^-15  g/sqrt[Hz], with g the standard gravity, for frequencies between 0.7 and 20 mHz. This value is lower than the LISA Pathfinder requirement by more than a factor 5 and within a factor 1.25 of the requirement for the LISA mission, and is compatible with Brownian noise from viscous damping due to the residual gas surrounding the test masses. Above 60 mHz the acceleration noise is dominated by interferometer displacement readout noise at a level of (34.8±0.3)  fm/sqrt[Hz], about 2 orders of magnitude better than requirements. At f≤0.5  mHz we observe a low-frequency tail that stays below 12  fm s^-2/sqrt[Hz] down to 0.1 mHz. This performance would allow for a space-based gravitational wave observatory with a sensitivity close to what was originally foreseen for LISA.
7-giu-2016
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/01 - FISICA SPERIMENTALE
English
Con Impact Factor ISI
INTERFEROMETER; MISSION
Armano, M., Audley, H., Auger, G., Baird, J., Bassan, M., Binetruy, P., et al. (2016). Sub-Femto- g Free Fall for Space-Based Gravitational Wave Observatories: LISA Pathfinder Results. PHYSICAL REVIEW LETTERS, 116(23), 231101 [10.1103/PhysRevLett.116.231101].
Armano, M; Audley, H; Auger, G; Baird, J; Bassan, M; Binetruy, P; Born, M; Bortoluzzi, D; Brandt, N; Caleno, M; Carbone, L; Cavalleri, A; Cesarini, A; Ciani, G; Congedo, G; Cruise, A; Danzmann, K; De Deus Silva, M; De Rosa, R; Diaz Aguilo, M; Di Fiore, L; Diepholz, I; Dixon, G; Dolesi, R; Dunbar, N; Ferraioli, L; Ferroni, V; Fichter, W; Fitzsimons, E; Flatscher, R; Freschi, M; Garcia Marin, A; Garcia Marirrodriga, C; Gerndt, R; Gesa, L; Gibert, F; Giardini, D; Giusteri, R; Guzman, F; Grado, A; Grimani, C; Grynagier, A; Grzymisch, J; Harrison, I; Heinzel, G; Hewitson, M; Hollington, D; Hoyland, D; Hueller, M; Inchauspe, H; Jennrich, O; Jetzer, P; Johann, U; Johlander, B; Karnesis, N; Kaune, B; Korsakova, N; Killow, C; Lobo, J; Lloro, I; Liu, L; Lopez Zaragoza, J; Maarschalkerweerd, R; Mance, D; Martin, V; Martin Polo, L; Martino, J; Martin Porqueras, F; Madden, S; Mateos, I; Mcnamara, P; Mendes, J; Mendes, L; Monsky, A; Nicolodi, D; Nofrarias, M; Paczkowski, S; Perreur Lloyd, M; Petiteau, A; Pivato, P; Plagnol, E; Prat, P; Ragnit, U; Rais, B; Ramos Castro, J; Reiche, J; Robertson, D; Rozemeijer, H; Rivas, F; Russano, G; Sanjuan, J; Sarra, P; Schleicher, A; Shaul, D; Slutsky, J; Sopuerta, C; Stanga, R; Steier, F; Sumner, T; Texier, D; Thorpe, J; Trenkel, C; Trobs, M; Tu, H; Vetrugno, D; Vitale, S; Wand, V; Wanner, G; Ward, H; Warren, C; Wass, P; Wealthy, D; Weber, W; Wissel, L; Wittchen, A; Zambotti, A; Zanoni, C; Ziegler, T; Zweifel, P
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/177051
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