activity
20182026
most citedLISA Pathfinder Platform Stability and Drag-free Performance

78 citations · 220 across the 8 of their papers we have counts for

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Showing astro-ph.IMShow all

9 papers · 1 filter

astro-ph.IM2024

Tilt-to-length coupling in LISA Pathfinder: long-term stability

M Armano, H Audley, J Baird +75

The tilt-to-length coupling during the LISA Pathfinder mission has been numerically and analytically modeled for particular timespans. In this work, we investigate the long-term st…

astro-ph.IM202412 cited

Precision measurements of the magnetic parameters of LISA Pathfinder test masses

M Armano, H Audley, J Baird +76

A precise characterization of the magnetic properties of LISA Pathfinder free falling test-masses is of special interest for future gravitational wave observatory in space. Magneti…

astro-ph.IM202413 cited

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

M Armano, H Audley, J Baird +76

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 sen…

astro-ph.IM202437 cited

In-depth analysis of LISA Pathfinder performance results: Time evolution, noise projection, physical models, and implications for LISA

M. Armano, H. Audley, J. Baird +77

We present an in-depth analysis of the LISA Pathfinder differential acceleration performance over the entire course of its science operations, spanning approximately 500 days. We f…

astro-ph.IM202321 cited

Tilt-to-length coupling in LISA Pathfinder: a data analysis

M Armano, H Audley, J Baird +76

We present a study of the tilt-to-length coupling noise during the LISA Pathfinder mission and how it depended on the system's alignment. Tilt-to-length coupling noise is the unwan…

astro-ph.IM202036 cited

Spacecraft and interplanetary contributions to the magnetic environment on-board LISA Pathfinder

M. Armano, H. Audley, J. Baird +79

LISA Pathfinder (LPF) has been a space-based mission designed to test new technologies that will be required for a gravitational wave observatory in space. Magnetically driven forc…