Frequency noise stabilisation of a 1550 nm external cavity diode laser with hybrid feedback for next generation gravitational wave interferometry

Author:

Spencer Andrew1ORCID,Barr Bryan1,Bell Angus1,Briggs Joseph1,Minty Andrew1,Sorazu Borja1,Wright Jennifer1,Strain Kenneth1

Affiliation:

1. University of Glasgow

Abstract

Longer wavelength lasers will be needed for future gravitational wave detectors that use cryogenic cooling of silicon based test-mass optics. Diode lasers with a 1550 nm wavelength output are potential seed light sources for such a detector, however diode laser devices have a different spectral profile and higher frequency noise than the solid state lasers used in current detectors. We present a frequency stabilisation system for a 1550 nm external cavity diode laser capable of reducing the laser frequency noise to a level of 0.1 Hz Hz up to 1 kHz with a unity gain frequency of 535 kHz using a hybrid analogue-digital servo with in-loop cancellation of resonant features. In addition, a method of high speed digital filter optimisation and automated design is demonstrated.

Funder

Science and Technology Facilities Council

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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