Complex Photonic Systems, MESA+ Institute for Nanotechnology, University of Twente, 7500 AE Enschede, The Netherlands.
Phys Rev Lett. 2011 Nov 4;107(19):193903. doi: 10.1103/PhysRevLett.107.193903. Epub 2011 Nov 3.
We present time-resolved emission experiments of semiconductor quantum dots in silicon 3D inverse-woodpile photonic band gap crystals. A systematic study is made of crystals with a range of pore radii to tune the band gap relative to the emission frequency. The decay rates averaged over all dipole orientations are inhibited by a factor of 10 in the photonic band gap and enhanced up to 2× outside the gap, in agreement with theory. We discuss the effects of spatial inhomogeneity, nonradiative decay, and transition dipole orientations on the observed inhibition in the band gap.
我们展示了半导体量子点在硅 3D 倒木堆光子带隙晶体中的时间分辨发射实验。通过系统地研究一系列具有不同孔径的晶体,可以调整带隙与发射频率的关系。在光子带隙中,所有偶极子取向的平均衰减率被抑制了 10 倍,而在带隙外,衰减率增强了 2 倍,这与理论相符。我们讨论了空间非均匀性、非辐射衰减和跃迁偶极子取向对带隙中观察到的抑制效应的影响。