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Solid-state ensemble of highly entangled photon sources at rubidium atomic transitions

机译:rub原子跃迁高度纠缠的光子源的固态整体

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摘要

Semiconductor InAs/GaAs quantum dots grown by the Stranski-Krastanov method are among the leading candidates for the deterministic generation of polarization-entangled photon pairs. Despite remarkable progress in the past 20 years, many challenges still remain for this material, such as the extremely low yield, the low degree of entanglement and the large wavelength distribution. Here, we show that with an emerging family of GaAs/AlGaAs quantum dots grown by droplet etching and nanohole infilling, it is possible to obtain a large ensemble of polarization-entangled photon emitters on a wafer without any post-growth tuning. Under pulsed resonant two-photon excitation, all measured quantum dots emit single pairs of entangled photons with ultra-high purity, high degree of entanglement and ultra-narrow wavelength distribution at rubidium transitions. Therefore, this material system is an attractive candidate for the realization of a solid-state quantum repeater - among many other key enabling quantum photonic elements. © The Author(s) 2017.
机译:通过Stranski-Krastanov方法生长的半导体InAs / GaAs量子点是确定性产生偏振纠缠光子对的主要候选者。尽管在过去的20年中取得了长足的进步,但这种材料仍然面临许多挑战,例如极低的产量,低的纠缠度和大的波长分布。在这里,我们表明,随着新兴的通过液滴蚀刻和纳米孔填充而生长的GaAs / AlGaAs量子点家族,有可能在晶片上获得大的偏振纠缠光子发射器整体,而无需任何后生长调谐。在脉冲共振双光子激发下,所有测得的量子点都会发射出一对纠缠的光子,这些纠缠的光子在rub跃迁处具有超高纯度,高度纠缠和超窄波长分布。因此,该材料系统是实现固态量子中继器的诱人候选者,其中包括许多其他关键的量子光子元件。 ©作者2017。

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