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Large and robust mechanical squeezing of optomechanical systems in a highly unresolved sideband regime via Duffing nonlinearity and intracavity squeezed light

Jian-Song Zhang, Ai-Xi Chen

2020Optics Express19 citationsDOIOpen Access PDF

Abstract

We propose a scheme to generate strong and robust mechanical squeezing in an optomechanical system in the highly unresolved sideband (HURSB) regime with the help of the Duffing nonlinearity and intracavity squeezed light. The system is formed by a standard optomechanical system with the Duffing nonlinearity (mechanical nonlinearity) and a second-order nonlinear medium (optical nonlinearity). In the resolved sideband regime, the second-order nonlinear medium may play a destructive role in the generation of mechanical squeezing. However, it can significantly increase the mechanical squeezing (larger than 3dB) in the HURSB regime when the parameters are chosen appropriately. Finally, we show the mechanical squeezing is robust against the thermal fluctuations of the mechanical resonator. The generation of large and robust mechanical squeezing in the HURSB regime is a combined effect of the mechanical and optical nonlinearities.

Topics & Concepts

SidebandPhysicsNonlinear systemMechanical systemDuffing equationOptomechanicsOpticsThermalNonlinear opticsThermal fluctuationsOptical forceVibrationQuantum opticsNonlinear mediumClassical mechanicsSum-frequency generationSqueezed coherent stateQuantum electrodynamicsQuantum mechanicsRadiation pressureMechanical and Optical ResonatorsNonlinear Photonic SystemsQuantum Mechanics and Non-Hermitian Physics