Koenderink A Femius, Kafesaki Maria, Soukoulis Costas M, Sandoghdar Vahid
Laboratory of Physical Chemistry, Swiss Federal Institute of Technology (ETH), Zürich, Switzerland.
Opt Lett. 2005 Dec 1;30(23):3210-2. doi: 10.1364/ol.30.003210.
We show theoretically that photonic crystal membranes cause large variations in the spontaneous emission rate of dipole emitters, not only inside but also in the near field above the membranes. Our three-dimensional finite-difference time-domain calculations reveal an inhibition of more than five times and an enhancement of more than ten times for the spontaneous emission rate of emitters with select dipole orientations and frequencies. Furthermore, we demonstrate theoretically the potential of a nanoscopic emitter attached to the end of a glass fiber tip as a local probe for mapping the large spatial variations of the photonic crystal local radiative density of states. This arrangement is promising for on-command modification of the coupling between an emitter and the photonic crystal in quantum optical experiments.
我们从理论上表明,光子晶体膜不仅会使偶极子发射器在膜内部,而且在膜上方的近场中的自发发射率产生很大变化。我们的三维时域有限差分计算表明,对于具有特定偶极子取向和频率的发射器,其自发发射率的抑制超过五倍,增强超过十倍。此外,我们从理论上证明了附着在玻璃纤维尖端末端的纳米级发射器作为局部探针用于绘制光子晶体局部态密度的大空间变化的潜力。这种配置对于量子光学实验中按需修改发射器与光子晶体之间的耦合很有前景。