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Speedmeter: Quantum back-action noise-free interferometry for improving the science capabilities of future gravitational wave observatories

Periodic Reporting for period 2 - SPEED (Speedmeter: Quantum back-action noise-free interferometry for improving the science capabilities of future gravitational wave observatories)

Período documentado: 2023-04-01 hasta 2024-09-30

This project aims at investigating a new measurement concept, so-called speedmeter, for gravitational wave detectors. If successful it will enable future gravitational wave observatories as the European Einstein Telescope to observe the Universe even further back in time towards the Big Bang.
We developed various theoretical and experimental building blocks required for exploring a practical implementation of the speedmeter concepts. This includes new simulation tools, development of a new type of optical thin-film coating as well as prrof-of-concept table top experiments.
1. Integration of polarization capabilities into the FINESSE software;
2. Development of an improved optomechanical design for squeezed light sources;
3. Development of a speedmeter inspired new quantum noise reduction scheme for gravitational wave detectors, featuring the potential benefit of not requiring kilometer long optical filter cavities. "Frequency-dependent squeezing for gravitational-wave detection through quantum teleportation", https://doi.org/10.48550/arXiv.2401.04295(se abrirá en una nueva ventana);
Team members working on the characterisation of the all polarisation coatings
Impression of the EPR speedmeter proof-of-concept setup
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