Tunable double optomechanically induced transparency in an optomechanical system
arXiv:1405.2410 · doi:10.1103/PhysRevA.90.043825
Abstract
We study the dynamics of a driven optomechanical cavity coupled to a charged nanomechanical resonator via Coulomb interaction, in which the tunable double optomechanically induced transparency (OMIT) can be observed from the output field at the probe frequency by controlling the strength of the Coulomb interaction. We calculate the splitting of the two transparency windows, which varies near linearly with the Coulomb coupling strength in a robust way against the cavity decay. Our double-OMIT is much different from previously mentioned double-EIT and can be applied to measure Coulomb coupling strength.
7Pages, 7 figures
References in corpus (13)
- Optomechanically induced transparency
- Electromagnetically Induced Transparency and Slow Light with Optomechanics
- Observation of strong coupling between a micromechanical resonator and an optical cavity field
- Circuit cavity electromechanics in the strong coupling regime
- Cavity Optomechanics
- Ground-state cooling of a micromechanical oscillator: generalized framework for cold damping and cavity-assisted cooling schemes
- Coherent optical wavelength conversion via cavity-optomechanics
- Nanomechanical Resonators and Their Applications in Biological/Chemical Detection: Nanomechanics Principles
- Precision measurement of charge number with optomechanically induced transparency
- Control of microwave signals using circuit nano-electromechanics
- Large Cross-Phase Modulation between Slow Co-propagating Weak Pulses in Rb
- Ion trap transducers for quantum electromechanical oscillators
- Superluminal and Ultraslow Light Propagation in Optomechanical Systems
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