Quantum fisher information of an optomechanical force sensor driven by a squeezed vacuum field

Author:

Lee Chang-Woo12,Lee Jae Hoon3,Joo Jaewoo4ORCID,Seok Hyojun1ORCID

Affiliation:

1. Kongju National University

2. Korea Institute for Advanced Study

3. Korea Research Institute of Standards and Science

4. University of Portsmouth

Abstract

We investigate the enhancement in sensitivity when measuring a weak force through the optical response of an optomechanical oscillator driven by squeezed light. In the context of a quantum sensor based on cavity-optomechanics, the sensitivity scaling measured by the quantum Fisher information for a squeezed vacuum state pump is compared to that for a coherent state pump. We show that squeezed state inputs can produce noise levels below the standard quantum limit and even the Heisenberg limit in given regimes. This study shows that new pathways can be opened for enhanced quantum sensing with optomechanical systems conducive to measuring various physical quantities such as gravitational force, acceleration, and acoustics.

Funder

Institute of Information & Communications Technology Planning & Evaluation

National Research Foundation of Korea

Kongju National University

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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