Modelling defect cavities formed in inverse three-dimensional rod-connected diamond photonic crystals
Modelling defect cavities formed in inverse three-dimensional rod-connected diamond photonic crystals
复制标题
模拟逆三维棒连接金刚石光子晶体中形成的缺陷空腔
DOI:
10.1209/0295-5075/116/64007
复制
发表时间:
2016
期刊:
影响因子:
--
通讯作者:
J. Rarity
中科院分区:
文献类型:
--
作者:
M. Taverne;Y. Ho;Xu Zheng;S. Liu;Lifeng Chen;M. López;J. Rarity
Defect cavities in 3D photonic crystal can trap and store light in the smallest volumes allowable in dielectric materials, enhancing non-linearities and cavity QED effects. Here, we study inverse rod-connected diamond (RCD) crystals containing point defect cavities using plane-wave expansion and finite-difference time domain methods. By optimizing the dimensions of the crystal, wide photonic bandgaps are obtained. Mid-bandgap resonances can then be engineered by introducing point defects in the crystal. We investigate a variety of single spherical defects at different locations in the unit cell focusing on high-refractive-index-contrast (3.3:1) inverse RCD structures; quality factors (Q-factors) and mode volumes of the resonant cavity modes are calculated. By choosing a symmetric arrangement, consisting of a single sphere defect located at the center of a tetrahedral arrangement, mode volumes < 0.06 cubic wavelengths are obtained, a record for high-index cavities.
影响因子:
3.8
作者:
Chen L
通讯作者:
Chen L