LIGO Document T2400142-v1
- A collection of the main papers, theses, presentations and technical notes about HoQI.
Papers:
* Original HoQI paper: S J Cooper et al 2018 A compact, large-range interferometer for precision measurement and inertial sensing Class. Quantum Grav. 35 095007
* HoQI Static Performance and Prototype Suspension measurements: A L Mitchell et al, paper in preparation, P2400182
* HoQI damping on BBSS modelling: J van Dongen et al 2022 Reducing control noise in gravitational wave detectors with interferometric local damping of suspended optics Rev. Sci. Instrum. 94, 054501 (DCC: P2100122)
* CRS paper: M P Ross et al 2023 A vacuum-compatible cylindrical inertial rotation sensor with picoradian sensitivity Rev. Sci. Instrum. 94, 094503 (DCC: P2300324)
* Laser frequency stabilisation using HoQI: C Di Fronzo et al 2024 Laser frequency stabilization with the use of homodyne quadrature interferometers Class. Quantum Grav. 41 065010 (DCC: P2300178)
Theses:
* Samuel J Cooper 2020, Breaking the seismic wall: how to improve gravitational wave detectors at low frequency
Includes: design, non-linearities and ellipse fitting, HoQIs on L4Cs
Talks:
* Introduction to HoQI, Stanford and CalTech presentations 2023, G2301159
* Technical Readiness of HoQI for LIGO, LIGO systems call presentation, G2201955
* Prototyping HoQIs on a Suspended Interferometer, SWG paper presentation, G2301158
* Demonstrating Interferometric Sensors to Improve Local Control of Suspended Optics, GWADW 2022 https://www.gravity.phys.titech.ac.jp/GWADW2022/talks/Mitchell.pdf
* HoQI for BHQS, Heavy-SUS MIT workshop 2023, G2300698
* HoQI first in-vacuum tests, SWG working group call, G2102537
Technical Notes:
* Alexandra Mitchell Masters Report, Investigating the use of retroreflectors in HoQI, T2200369
* HoQI parts document tree, E2300038
* Vacuum Compatibility of components, E2400153
* Assembly and Testing Document, E2300051
* Caltech CRS HoQI BOM, E2300046
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