Optimization of laser stabilization via self-injection locking to a whispering-gallery-mode microresonator: experimental study

Author:

Shitikov Artem E.ORCID,Lykov Ilya I.,Benderov Oleg V.1ORCID,Chermoshentsev Dmitry A.12ORCID,Gorelov Ilya K.3,Danilin Andrey N.3ORCID,Galiev Ramzil R.4,Kondratiev Nikita M.4ORCID,Cordette Steevy J.4,Rodin Alexander V.1,Masalov Anatoly V.5,Lobanov Valery E.ORCID,Bilenko Igor A.3

Affiliation:

1. Moscow Institute of Physics and Technology

2. Skolkovo Institute of Science and Technology

3. Lomonosov Moscow State University

4. Technology Innovation Institute

5. Russian Academy of Sciences

Abstract

Self-injection locking of a diode laser to a high-quality-factor microresonator is widely used for frequency stabilization and linewidth narrowing. We constructed several microresonator-based laser sources with measured instantaneous linewidths of 1 Hz and used them for investigation and implementation of the self-injection locking effect. We studied analytically and experimentally the dependence of the stabilization coefficient on tunable parameters such as locking phase and coupling rate. It was shown that precise control of the locking phase allows fine-tuning of the generated frequency from the stabilized laser diode. We also showed that it is possible for such laser sources to realize fast continuous and linear frequency modulation by injection current tuning inside the self-injection locking regime. We conceptually demonstrate coherent frequency-modulated continuous wave LIDAR over a distance of 10 km using such a microresonator-stabilized laser diode in the frequency-chirping regime and measure velocities as low as sub-micrometer per second in the unmodulated case. These results could be of interest to cutting-edge technology applications such as space debris monitoring and long-range object classification, high-resolution spectroscopy, and others.

Funder

Russian Foundation for Basic Research

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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