arXiv · 1910.00289
Manipulation of optomechanically induced transparency and absorption by indirectly coupling to an auxiliary cavity mode
Abstract
We theoretically study the optomechanically induced transparency (OMIT) and absorption(OMIA) phenomena in a single microcavity optomechanical system, assisted by an indirectly-coupledauxiliary cavity mode. We show that the interference effect between the two optical modes playsan important role and can be used to control the multiple-pathway induced destructive or construc-tive interference effect. The three-pathway interference could induce an absorption dip within thetransparent window in the red sideband driving regime, while we can switch back and forth betweenOMIT and OMIA with the four-pathway interference. The conversion between the transparencypeak and absorption dip can be achieved by tuning the relative amplitude and phase of the multiplelight paths interference. Our system proposes a new platform to realize multiple pathways inducedtransparency and absorption in a single microcavity and a feasible way for realizing all-opticalinformation processing.
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Guo-qing Qin, Hong Yang, Xuan Mao, Jing-wei Wen, Min Wang, Dong Ruan, Gui-lu Long. 2019-10-01. Manipulation of optomechanically induced transparency and absorption by indirectly coupling to an auxiliary cavity mode. https://doi.org/10.1364/oe.381760
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