论文标题

量子光子量应用的单光雪崩二极管的最新进展和未来观点

Recent advances and future perspectives of single-photon avalanche diodes for quantum photonics applications

论文作者

Ceccarelli, Francesco, Acconcia, Giulia, Gulinatti, Angelo, Ghioni, Massimo, Rech, Ivan, Osellame, Roberto

论文摘要

光子量子技术承诺,由于将单个光子作为量子信息携带者剥削的许多优势,从模拟和计算到通信和感应的信息处理世界的革命。在这种情况下,单光子检测器起着关键作用。一方面,超导纳米线单光子探测器(SNSPDS)能够在广泛的光谱范围内提供出色的性能,但是它们的适用性通常受到需要低温工作温度的限制。另一方面,单光子雪崩二极管(Spads)通过在室温下或低于略低的替代方案来克服SNSPD的固有局限性。在本文中,我们回顾了SPAD操作的基本原理,并对该领域的最新进展进行了详尽的讨论,将这些设备的性能与量子光子学应用程序的要求进行了比较。最后,我们通过总结前景和不败的路径来结束对未来的愿景,这些途径可以在光子量子信息处理领域开放新的观点。

Photonic quantum technologies promise a revolution of the world of information processing, from simulation and computing to communication and sensing, thanks to the many advantages of exploiting single photons as quantum information carriers. In this scenario, single-photon detectors play a key role. On the one hand, superconducting nanowire single-photon detectors (SNSPDs) are able to provide remarkable performance on a broad spectral range, but their applicability is often limited by the need of cryogenic operating temperatures. On the other hand, single-photon avalanche diodes (SPADs) overcome the intrinsic limitations of SNSPDs by providing a valid alternative at room temperature or slightly below. In this paper, we review the fundamental principles of the SPAD operation and we provide a thorough discussion of the recent progress made in this field, comparing the performance of these devices with the requirements of the quantum photonics applications. In the end, we conclude with our vision of the future by summarizing prospects and unbeaten paths that can open new perspectives in the field of photonic quantum information processing.

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