论文标题

刺耳的脉冲启用的时空谱量量子点的集体激发

Collective Excitation of Spatio-Spectrally Distinct Quantum Dots Enabled by Chirped Pulses

论文作者

Kappe, Florian, Karli, Yusuf, Bracht, Thomas K., da Silva, Saimon Covre, Seidelmann, Tim, Axt, Vollrath Martin, Rastelli, Armando, Weihs, Gregor, Reiter, Doris E., Remesh, Vikas

论文摘要

对于产生纠缠光子的可扩展光子设备,希望在集合中拥有多个量子发射器,尽管它们具有光谱变化,但可以集体兴奋。对于量子点,Rabi旋转是共振激发的最流行方法,无法确保通用,高效的激发态制备,因为它对激发参数的敏感性。相比之下,依赖于光脉冲脉冲的绝热快速通道(ARP)对量子点频谱不均匀免疫。在这里,我们主张ARP的鲁棒性同时激发多个量子点的Biexciton状态。对于积极的chir,我们发现还存在声子优势的制度,它扩大了光谱失调的公差范围。使用相同的激光脉冲,我们证明了能量和空间上不同的量子点的同时激发。能够生成空间多路复用的纠缠光子对是迈向光子设备可扩展性的重要一步。

For a scalable photonic device producing entangled photons, it is desirable to have multiple quantum emitters in an ensemble that can be collectively excited, despite their spectral variability. For quantum dots, Rabi rotation, the most popular method for resonant excitation, cannot assure a universal, highly efficient excited state preparation, because of its sensitivity to the excitation parameters. In contrast, Adiabatic Rapid Passage (ARP), relying on chirped optical pulses, is immune to quantum dot spectral inhomogeneity. Here, we advocate the robustness of ARP for simultaneous excitation of the biexciton states of multiple quantum dots. For positive chirps, we find that there is also regime of phonon advantage that widens the tolerance range of spectral detunings. Using the same laser pulse we demonstrate the simultaneous excitation of energetically and spatially distinct quantum dots. Being able to generate spatially multiplexed entangled photon pairs is a big step towards the scalability of photonic devices.

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