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Characteristics of resonant modes of photonic crystal cavities

机译:光子晶体腔共振模式的特征

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We investigate the characteristics of resonant mode of a cavity with two-dimensional (2D) photonic crystal (PC) mirrors using the finite-difference time domain simulation. The employed PC mirrors are composed of a square array of dielectric rods in air. As the dielectric constant of the rods increases, the frequency of resonant mode decreases whereas its Q factor increases. However, both the frequency and Q factor of a resonant mode increases as the number of dielectric rod increases. To clarify the mechanism that determines the frequency of resonant modes, we have studied the characteristics of resonant modes of one-dimensional PC cavities made of PCs. Our study of one-dimensional PC cavity demonstrates that both the phase change due to the reflection at the surface of PC mirror and the optical path length between PC mirrors play important roles in the determination of the position of resonant frequency. We also discuss the tunable PC filters implemented with the PC mirrors composed of some materials, such as liquid crystal, whose dielectric constant depends on an external field. In this case, the phase change due to the reflection can be controlled by changing the dielectric constant of liquid crystals in the PC mirrors.
机译:我们使用有限差分时域模拟研究了具有二维(2D)光子晶体(PC)反射镜的腔的谐振模式的特性。所采用的PC反射镜由空气中的介电棒的方形阵列组成。随着杆的介电常数增加,谐振模式的频率降低,而其Q因子增加。然而,随着介电杆的数量增加,谐振模式的频率和Q系数增加。为了阐明确定谐振模式频率的机制,我们研究了由PC制成的一维PC腔的共振模式的特性。我们对一维PC腔的研究表明,由于PC镜像表面的反射和PC反射镜之间的光路长度引起的相位变化在确定谐振频率的位置时起重要作用。我们还讨论了由由某些材料组成的PC反射镜(例如液晶)实现的可调谐PC滤波器,其介电常数取决于外部场。在这种情况下,可以通过改变PC镜中的液晶的介电常数来控制由于反射引起的相变。

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