论文标题

量子点光的频域中的实验多状态量子歧视

Experimental Multi-state Quantum Discrimination in the Frequency Domain with Quantum Dot Light

论文作者

Laneve, Alessandro, Rota, Michele B., Basset, Francesco Basso, Fiorente, Nicola P., Krieger, Tobias M., da Silva, Saimon F. Covre, Buchinger, Quirin, Stroj, Sandra, Hoefling, Sven, Huber-Loyola, Tobias, Rastelli, Armando, Trotta, Rinaldo, Mataloni, Paolo

论文摘要

寻求实现有效的量子状态歧视策略的追求对于量子信息技术以及基本研究引起了极大的兴趣。因此,开发新的,更有效的方法来实施量子状态的歧视协议至关重要。除其他外,由于在量子通信方案中具有固有的安全优势,因此更适合使用单个光子实现。在这项工作中,我们介绍了采用时间多工策略的协议实现的实验实现,以最佳区分八个非正交状态,并在四维的希尔伯特空间中编码,跨越了自由度和光子能量的极化程度。该实验建立在定制设计的散装光学分析仪设置和由几乎确定性固态源产生的单个光子的设置上,代表了使用实际量子状态的最小误差判别的基准示例,仅需要线性光学器件和两个要实现的光电镜。我们的工作为更复杂的应用铺平了道路,并为高维量子编码和解码操作提供了一种新颖的方法。

The quest for the realization of effective quantum state discrimination strategies is of great interest for quantum information technology, as well as for fundamental studies. Therefore, it is crucial to develop new and more efficient methods to implement discrimination protocols for quantum states. Among the others, single photon implementations are more advisable, because of their inherent security advantage in quantum communication scenarios. In this work, we present the experimental realization of a protocol employing a time-multiplexing strategy to optimally discriminate among eight non-orthogonal states, encoded in the four-dimensional Hilbert space spanning both the polarization degree of freedom and photon energy. The experiment, built on a custom-designed bulk optics analyser setup and single photons generated by a nearly deterministic solid-state source, represents a benchmarking example of minimum error discrimination with actual quantum states, requiring only linear optics and two photodetectors to be realized. Our work paves the way for more complex applications and delivers a novel approach towards high-dimensional quantum encoding and decoding operations.

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