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A quantum light-emitting diode for the standard telecom window around 1550 nm

机译:用于1550 nm左右的标准电信窗口的量子发光二极管

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摘要

Single photons and entangled photon pairs are a key resource of many quantum secure communication and quantum computation protocols, and non-Poissonian sources emitting in the low-loss wavelength region around 1,550 nm are essential for the development of fibre-based quantum network infrastructure. However, reaching this wavelength window has been challenging for semiconductor-based quantum light sources. Here we show that quantum dot devices based on indium phosphide are capable of electrically injected single photon emission in this wavelength region. Using the biexciton cascade mechanism, they also produce entangled photons with a fidelity of 87 ± 4%, sufficient for the application of one-way error correction protocols. The material system further allows for entangled photon generation up to an operating temperature of 93 K. Our quantum photon source can be directly integrated with existing long distance quantum communication and cryptography systems, and provides a promising material platform for developing future quantum network hardware.
机译:单光子和纠缠光子对是许多量子安全通信和量子计算协议的关键资源,并且在基于光纤的量子网络基础设施的发展中,在1,550 nm左右的低损耗波长区域内发射的非泊松源非常重要。然而,对于基于半导体的量子光源而言,达到该波长窗口一直是挑战。在这里,我们表明基于磷化铟的量子点器件能够在此波长范围内电注入单光子发射。利用双激子级联机制,它们还产生保真度为87±4%的纠缠光子,足以应用单向纠错协议。该材料系统进一步允许纠缠光子的产生,直到工作温度达到93 K,我们的量子光子源可以直接与现有的长距离量子通信和密码系统集成,并为开发未来的量子网络硬件提供了有希望的材料平台。

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