Feedback enhanced phonon lasing of a microwave frequency resonator

Author:

Parsa Peyman1ORCID,Shandilya Prasoon Kumar1,Lake David P.1ORCID,Mitchell Matthew E.1ORCID,Barclay Paul E.1ORCID

Affiliation:

1. Institute for Quantum Science and Technology, University of Calgary , Calgary, Alberta T2N 1N4, Canada

Abstract

The amplitude of self-oscillating mechanical resonators in cavity optomechanical systems is typically limited by nonlinearities arising from the cavity’s finite optical bandwidth. We propose and demonstrate a feedback technique for increasing this limit. By modulating the cavity input field with a signal derived from its output intensity, we increase the amplitude of a self-oscillating GHz frequency mechanical resonator by 22% (an increase in coherent phonon number of 50%), limited only by the achievable optomechanical cooperativity of the system. This technique will advance applications dependent on high dynamic mechanical stress, such as coherent spin-phonon coupling, as well as the implementation of sensors based on self-oscillating resonators.

Funder

Natural Sciences and Engineering Research Council of Canada

Alberta Innovates

Canadian Foundation for Innovation

Publisher

AIP Publishing

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