Center for Quantum Information and Control, Department of Physics and Astronomy, University of New Mexico, Albuquerque, New Mexico 87131, USA.
Phys Rev Lett. 2018 Jul 13;121(2):023603. doi: 10.1103/PhysRevLett.121.023603.
The discrimination of two nonorthogonal states is a fundamental element for secure and efficient communication. Quantum measurements of nonorthogonal coherent states can enhance information transfer beyond the limits of conventional technologies. We demonstrate a strategy for binary state discrimination based on optimized single-shot measurements with photon number resolving detection with a finite number resolution. This strategy enables a high degree of robustness to noise and imperfections while being scalable to high rates and, in principle, allows for surpassing the quantum noise limit (QNL) in practical situations. These features make the strategy inherently compatible with high-bandwidth communication and quantum information applications, providing advantages over the QNL under realistic conditions.
两种非正交态的区分是安全高效通信的基本要素。非正交相干态的量子测量可以增强信息传输,超越传统技术的限制。我们展示了一种基于优化单次测量的二进制态区分策略,该策略结合了有限分辨率的光子数分辨探测。该策略在具有高速率和可扩展性的同时,对噪声和不完美具有高度的鲁棒性,并且原则上允许在实际情况下超越量子噪声极限(QNL)。这些特性使得该策略与高带宽通信和量子信息应用固有兼容,在实际条件下优于 QNL。