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Phase modulated circles in a sunflower-type circular photonic crystal with ultra-small mode area and high-Q cavity

机译:具有超小模面积和高Q腔的向日葵型圆形光子晶体中的调相圆

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A modified sunflower type circular photonic crystal defect cavity consisting of 10 concentric circles is studied where the defect cavity is created by removing the central hole. The resonant characteristics of the CPC defect cavity with gradually shifted phase angle in successive hole circles are analyzed. The resonant transverse electric (TE) and transverse magnetic (TM) mode frequencies were calculated by 2D finite difference time domain (FDTD) method. The field profiles at resonant frequencies are calculated and mode areas (Am) are determined from both TE and TM mode profiles. It is found that temporal decay of field energy in the cavity is exponential. From the decay of the energy in the cavity, the quality factor (Q) of the PC cavity is determined. Finally the impact of phase modulation on Q and Am of the designed CPC defect cavity is examined.
机译:研究了由10个同心圆组成的改进的向日葵型圆形光子晶体缺陷腔,其中通过去除中心孔来创建缺陷腔。分析了相角逐渐偏移的CPC缺陷腔在连续圆孔中的共振特性。共振横向电(TE)和横向磁(TM)模式频率是通过二维有限差分时域(FDTD)方法计算的。计算共振频率下的场分布,并从TE和TM模式分布中确定模态面积(Am)。发现腔中场能的时间衰减是指数的。根据空腔中能量的衰减,可以确定PC空腔的品质因数(Q)。最后,研究了相位调制对设计的CPC缺陷腔的Q和Am的影响。

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