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Photonic media with whispering-gallery modes

机译:具有耳语画廊模式的光子媒体

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We theoretically show that achieving high Q-factors of small whispering gallery mode resonators, together with significant non-harmonism (non-equidistance) of its modes, allows for extensive analogy between properties of atoms and the resonator modes. The non-harmonism in very high-Q microresonators is caused by the material as well as geometrical dispersion. The established analogy leads to creating of a 'photonic' media with properties similar to those of atomic media. For instance, effective 'two-level' systems can be formed within the resonator. The 'levels' of the systems, i.e. the resonator modes, can be coupled with microwave or optical fields. Strong confinement of the light in the resonator along with high Q-factors results in nonlinear processes at low light levels even with small nonlinearities typical of optically transparent materials.
机译:我们从理论上表明,实现小型耳语画廊模式谐振器的高Q因子,以及其模式的显着非谐性(非等距性),可以在原子性质和谐振器模式之间进行广泛的类比。高Q微谐振器的非谐性是由材料以及几何色散引起的。既定的类比导致创建具有类似于原子介质性质的“光子”介质。例如,可以在谐振器内形成有效的“两级”系统。系统的“水平”,即谐振器模式,可以与微波或光场耦合。谐振器中光的强约束以及高Q因子即使在光学透明材料通常具有较小的非线性的情况下,也会在低光水平下导致非线性过程。

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