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涉及光子晶体微腔和法诺线形的光学双稳性。

Optical bistability involving photonic crystal microcavities and Fano line shapes.

作者信息

Cowan A R, Young Jeff F

机构信息

Department of Physics and Astronomy, University of British Columbia, Vancouver, BC, Canada V6T 1Z4.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Oct;68(4 Pt 2):046606. doi: 10.1103/PhysRevE.68.046606. Epub 2003 Oct 20.

DOI:10.1103/PhysRevE.68.046606
PMID:14683064
Abstract

The reflectivity of a single-channel waveguide mode upon resonantly coupling to a Kerr-active nonlinear resonant cavity is calculated analytically, including the effects of two-photon absorption. The resonant reflectivity takes the form of a Fano resonance because the solution includes linear reflections from perturbations downstream of the localized cavity. Instead of using a Hamiltonian formulation of the scattering problem, an intuitive set of basis states is used to expand the Green's function of the electric field wave equation. All resulting overlap functions describing the linear coupling between guided and localized states, and the nonlinear renormalization of the material's refractive index, are in terms of well-defined physical quantities. Although derived in the context of photonic crystal-based waveguides and cavities, the treatment is valid for any low-loss waveguide-resonator geometry that satisfies specific weak coupling criteria. For a cavity consisting of Al0.18Ga0.82As, hosting a localized mode at 1.55 microm with a Q of 4000 and a mode volume of 0.055 microm(3), we predict the onset of bistable reflection at incident powers of approximately 40 mW. The downstream reflections lead to hysteresis loops in the reflectivity that are topologically distinct from conventional Lorentzian-derived loops characteristic of isolated Fabry-Perot cavities. We provide a stability argument that reveals the unstable branches of these unique hysteresis loops, and we illustrate some of the rich bistable behaviors that can be engineered with such downstream sources.

摘要

通过解析计算了单通道波导模式与克尔活性非线性谐振腔共振耦合时的反射率,其中包括双光子吸收的影响。共振反射率呈现出法诺共振的形式,这是因为该解包含了来自局部腔下游微扰的线性反射。这里没有使用散射问题的哈密顿表述,而是使用了一组直观的基态来展开电场波动方程的格林函数。所有描述导波态与局域态之间线性耦合以及材料折射率非线性重整化的重叠函数,都是基于明确定义的物理量。尽管该理论是在基于光子晶体的波导和腔的背景下推导出来的,但对于任何满足特定弱耦合标准的低损耗波导 - 谐振器结构都是有效的。对于一个由Al0.18Ga0.82As组成的腔,在1.55微米处有一个局域模式,品质因数Q为4000,模式体积为0.055立方微米(3),我们预测在入射功率约为40毫瓦时会出现双稳反射。下游反射导致反射率中的滞后回线,其拓扑结构与孤立法布里 - 珀罗腔典型的传统洛伦兹型滞后回线不同。我们提供了一个稳定性论证,揭示了这些独特滞后回线的不稳定分支,并展示了一些可以通过这种下游源设计出来的丰富双稳行为。

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