Resonatorless Optical Bistability

C. Bowden
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Abstract

Intrinsic (mirrorless) optical bistability (MOB) has been predicted independently by a number of authors1. Recent experiments have demonstrated at least one major aspect of this phenomenon, i.e., MOB due to increasing absorption2. Other categories of MOB which have been predicted from theoretical models are caused by: interatomic correlation in a many-body quantum model, the anharmonic contribution in a classical Duffing oscillator, the local field correction in the macroscopic Maxwell-Bloch formulation, and coherent dipole-dipole interaction in a microscopic semiclassical model of a finite number of damped, two-level atoms driven by an external field3. All of these models share a single common characteristic which causes MOB in some region of the parameter space of each model. The characteristic is simply: an interaction-dependent nonlinearity which causes a renormalization of the resonance frequency. In each case, the sign and magnitude of the incident field detuning from the unrenormalized resonance is a crucial parameter.
无谐振光学双稳性
许多作者已经独立地预测了内在(无反光镜)光学双稳性(MOB)。最近的实验至少证明了这一现象的一个主要方面,即由于吸收增加而产生的MOB。从理论模型中预测到的其他类型的MOB是由:多体量子模型中的原子间相关,经典Duffing振荡器中的非调和贡献,宏观Maxwell-Bloch公式中的局部场校正,以及由外部场驱动的有限数量阻尼的两能级原子的微观半经典模型中的相干偶极子-偶极子相互作用引起的3。所有这些模型都有一个共同的特征,即在每个模型的参数空间的某个区域产生MOB。这种特性很简单:一种相互作用相关的非线性导致共振频率的重整化。在每种情况下,从非重整化共振中失谐的入射场的符号和大小是一个至关重要的参数。
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