Sci Rep. 2012;2:321. doi: 10.1038/srep00321. Epub 2012 Mar 19.
High-bit-rate nanocavity-based single photon sources in the 1,550-nm telecom band are challenges facing the development of fibre-based long-haul quantum communication networks. Here we report a very fast single photon source in the 1,550-nm telecom band, which is achieved by a large Purcell enhancement that results from the coupling of a single InAs quantum dot and an InP photonic crystal nanocavity. At a resonance, the spontaneous emission rate was enhanced by a factor of 5 resulting a record fast emission lifetime of 0.2 ns at 1,550 nm. We also demonstrate that this emission exhibits an enhanced anti-bunching dip. This is the first realization of nanocavity-enhanced single photon emitters in the 1,550-nm telecom band. This coupled quantum dot cavity system in the telecom band thus provides a bright high-bit-rate non-classical single photon source that offers appealing novel opportunities for the development of a long-haul quantum telecommunication system via optical fibres.
基于高比特率纳米腔的 1550nm 电信波段单光子源是光纤长距离量子通信网络发展所面临的挑战。在这里,我们报告了一种在 1550nm 电信波段的非常快的单光子源,这是通过单个 InAs 量子点和 InP 光子晶体纳米腔的耦合实现的强 Purcell 增强。在共振时,自发发射率增强了 5 倍,导致在 1550nm 处的记录快发射寿命为 0.2ns。我们还证明,这种发射表现出增强的反聚束凹陷。这是首次在 1550nm 电信波段实现纳米腔增强的单光子发射器。因此,这种在电信波段的耦合量子点腔系统提供了一个明亮的高比特率非经典单光子源,为通过光纤发展长距离量子通信系统提供了有吸引力的新机会。