Temperature stability in the sub-milliHertz band with LISA Pathfinder
arXiv:1905.09060 · doi:10.1093/mnras/stz1017
Abstract
LISA Pathfinder (LPF) was a technology pioneering mission designed to test key technologies required for gravitational wave detection in space. In the low frequency regime (milli-Hertz and below), where space-based gravitational wave observatories will operate, temperature fluctuations play a crucial role since they can couple into the interferometric measurement and the test masses' free-fall accuracy in many ways. A dedicated temperature measurement subsystem, with noise levels in 10KHz down to mHz was part of the diagnostics unit on board LPF. In this paper we report on the temperature measurements throughout mission operations, characterize the thermal environment, estimate transfer functions between different locations and report temperature stability (and its time evolution) at frequencies as low as 10Hz, where typically values around KHz were measured.
13 pages, 16 figures. MNRAS LaTeX style file version 3.0
References in corpus (6)
- A Versatile Technique to Enable sub-milli-Kelvin Instrument Stability for Precise Radial Velocity Measurements: Tests with the Habitable-zone Planet Finder
- Thermal gradient-induced forces on geodetic reference masses for LISA
- On-ground tests of LISA PathFinder thermal diagnostics system
- The diagnostics subsystem on board LISA PathFinder and LISA
- Thermo-elastic induced phase noise in the LISA Pathfinder spacecraft
- Thermal diagnostic of the Optical Window on board LISA Pathfinder
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