Publication | Open Access
Electromagnetically-induced-transparency-like ground-state cooling in a double-cavity optomechanical system
180
Citations
69
References
2014
Year
PhotonicsGround StateQuantum PhotonicsEngineeringPhysicsOptical PropertiesAcoustic MetamaterialCavity QedApplied PhysicsOptomechanical SystemMechanical ResonatorElectromagnetically-induced-transparency-like Ground-state CoolingCavity OptomechanicsOptomechanicsDynamic MetamaterialsOptoelectronicsMechanical Resonator Corresponds
We propose to cool a mechanical resonator close to its ground state via an electromagnetically-induced-transparency (EIT)-like cooling mechanism in a double-cavity optomechanical system, where an additional cavity couples to the original one in the standard optomechanical system. By choosing optimal parameters such that the cooling process of the mechanical resonator corresponds to the maximum value of the optical fluctuation spectrum and the heating process to the minimum one, the mechanical resonator can be cooled with the final mean phonon number less than that at the absence of the additional cavity. And we show the mechanical resonator may be cooled close to its ground state via such an EIT-like cooling mechanism even when the original resolved sideband condition is not fulfilled.
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