论文标题

通过受控量子干扰有效地生成亚自然宽双光子

Efficient Generation of Subnatural-Linewidth Biphotons by Controlled Quantum Interference

论文作者

Chinnarasu, Ravikumar, Liu, Chi-Yang, Ding, Yi-Feng, Lee, Chuan-Yi, Hsieh, Tsung-Hua, Yu, Ite A., Chuu, Chih-Sung

论文摘要

狭窄带宽和长时间长度的两孔在长距离量子通信(LDQC)和线性光学量子计算(LOQC)中起着至关重要的作用。但是,这些光子的生成通常需要具有高光学深度或自发参数下转换的原子集合,并具有复杂的光腔。通过操纵由低光(低型)原子集合产生的两个组件双音波函数,我们演示了在子MHz制度中具有亚自然线宽的两光子。还展示和讨论了这些时间长光子的量子波袋的塑形和操纵潜力。我们的工作分别在实现量子中继器和大量集群状态的LDQC和LOQC方面具有潜在的应用。生成和操纵低OD的亚自然宽度的双霍顿的可能性也为将Biphoton源提供了新的机会,以在芯片尺度量子设备上实施量子技术。

Biphotons of narrow bandwidth and long temporal length play a crucial role in long-distance quantum communication (LDQC) and linear optical quantum computing (LOQC). However, generation of these photons usually requires atomic ensembles with high optical depth or spontaneous parametric down-conversion with sophisticated optical cavity. By manipulating the two-component biphoton wavefunction generated from a low-optical-depth (low-OD) atomic ensemble, we demonstrate biphotons with subnatural linewidth in the sub-MHz regime. The potential of shaping and manipulating the quantum wavepackets of these temporally long photons is also demonstrated and discussed. Our work has potential applications in realizing quantum repeaters and large cluster states for LDQC and LOQC, respectively. The possibility to generate and manipulate subnatural-linewidth biphotons with low OD also opens up new opportunity to miniaturize the biphoton source for implementing quantum technologies on chip-scale quantum devices.

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