Passive laser power stabilization via an optical spring

Author:

Cullen Torrey1,Aronson Scott1,Pagano Ron1,Trad Nery Marina2ORCID,Cain Henry1,Cripe Jonathon13ORCID,Cole Garrett D.4ORCID,Sharifi Safura5,Aggarwal Nancy6,Willke Benno2ORCID,Corbitt Thomas1

Affiliation:

1. Louisiana State University

2. Leibniz Universität Hannover

3. Laboratory for Physical Sciences

4. Thorlabs Crystalline Solutions

5. University of Illinois Urbana-Champaign

6. Northwestern University

Abstract

Metrology experiments can be limited by the noise produced by the laser involved via small fluctuations in the laser’s power or frequency. Typically, active power stabilization schemes consisting of an in-loop sensor and a feedback control loop are employed. Those schemes are fundamentally limited by shot noise coupling at the in-loop sensor. In this Letter, we propose to use the optical spring effect to passively stabilize the classical power fluctuations of a laser beam. In a proof of principle experiment, we show that the relative power noise of the laser is stabilized from approximately 2 × 10−5 Hz−1/2 to a minimum value of 1.6 × 10−7 Hz−1/2, corresponding to the power noise reduction by a factor of 125. The bandwidth at which stabilization occurs ranges from 400 Hz to 100 kHz. The work reported in this Letter further paves the way for high power laser stability techniques which could be implemented in optomechanical experiments and in gravitational wave detectors.

Funder

Deutsche Forschungsgemeinschaft

National Science Foundation

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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