由啁啾脉冲实现的空间光谱不同量子点的集体激发

F. Kappe, Yusuf Karli, Thomas K. Bracht, S. F. Covre da Silva, T. Seidelmann, V. M. Axt, A. Rastelli, G. Weihs, D. Reiter, Vikas Remesh
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引用次数: 1

摘要

产生高纯度单光子和高保真纠缠光子对的纳米级光源是实现高安全量子通信器件的基石。为了实现高通信速率,需要有一个量子发射体的集合,尽管它们的光谱可变性,但它们可以被集体激发。对于半导体量子点,拉比旋转是最常用的共振激发方法。然而,由于对激励参数的敏感性,这些方法不能保证通用的、高效的激发态制备。相比之下,依靠啁啾光脉冲的绝热快速通道(ARP)不受量子点光谱不均匀性的影响。在这里,我们证明了ARP的鲁棒性对于在多个空间分离和光谱不同的量子点中同时激发双激子态是正确的。对于正啁啾,我们还发现声子的影响使谱失谐的灵敏度放松,并降低了所需的激发功率。利用双激子到基态级联从空间复用量子点源产生高纯度光子是实现高光子速率、基于纠缠的量子密钥分发协议的重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Collective excitation of spatio-spectrally distinct quantum dots enabled by chirped pulses
Nanoscale bright sources that produce high-purity single photons and high-fidelity entangled photon pairs are the building blocks to realize high security quantum communication devices. To achieve high communication rates, it is desirable to have an ensemble of quantum emitters that can be collectively excited, despite their spectral variability. In case of semiconductor quantum dots, Rabi rotations are the most popular method for resonant excitation. However, these cannot assure a universal, highly ef- ficient excited state preparation, due to the sensitivity to excitation parameters. In contrast, Adiabatic Rapid Passage (ARP), relying on chirped optical pulses, is immune to quantum dot spectral inhomo- geneity. Here, we show that the robustness of ARP holds true for the simultaneous excitation of the biexciton states in multiple, spatially separated and spectrally different quantum dots. For positive chirps, we also find a regime where the influence of phonons relax the sensitivity to spectral detunings and lower the needed excitation power. Being able to generate high-purity photons from spatially multiplexed quantum dot sources using the biexciton to ground state cascade is a big step towards the implementation of high photon rate, entanglement-based quantum key distribution protocols.
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