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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Confinement Factors and Modal Volumes of Micro- and Nanocavities Invariant to Integration Regions
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Confinement Factors and Modal Volumes of Micro- and Nanocavities Invariant to Integration Regions

机译:积分区域不变的微腔和纳米腔的约束因子和模量

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We present a convenient and self-consistent approach to calculate confinement factors and modal volumes of micro- and nanocavities, which are important for ultrasmall lasers and cavity quantum electrodynamics. This scheme does not rely on the numerical integrations related to optical fields and can avoid the indefinite dependence of physical quantities on integration regions. As a result of this built-in invariance to integration regions, the field representation of the confinement factor, in additional to its conventional expression, contains counter terms of volume and surface integrals, which cancel the effect of arbitrary integration volumes. This procedure is useful for small open cavities or those without sharp boundaries that distinguish cavity regions from free spaces. The uncertainty from different choices of integration regions can be thus eliminated.
机译:我们提出了一种方便且自洽的方法来计算微腔和纳米腔的限制因子和模态体积,这对于超小型激光器和腔量子电动力学至关重要。该方案不依赖于与光场有关的数值积分,并且可以避免物理量对积分区域的不确定依赖。由于对积分区域的这种固有不变性,限制因子的字段表示形式除了其常规表达式外,还包含体积和表面积分的对立项,从而抵消了任意积分体积的影响。此过程对于小型开放型腔体或没有锐利边界(将腔体区域与自由空间区分开)的腔体非常有用。因此可以消除来自不同选择的积分区域的不确定性。

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