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用于可扩展量子光子学的硅基工程化电信单光子发射器

Engineering telecom single-photon emitters in silicon for scalable quantum photonics.

作者信息

Hollenbach Michael, Berencén Yonder, Kentsch Ulrich, Helm Manfred, Astakhov Georgy V

出版信息

Opt Express. 2020 Aug 31;28(18):26111-26121. doi: 10.1364/OE.397377.

Abstract

We create and isolate single-photon emitters with a high brightness approaching 10 counts per second in commercial silicon-on-insulator (SOI) wafers. The emission occurs in the infrared spectral range with a spectrally narrow zero phonon line in the telecom O-band and shows a high photostability even after days of continuous operation. The origin of the emitters is attributed to one of the carbon-related color centers in silicon, the so-called G center, allowing purification with the C and Si isotopes. Furthermore, we envision a concept of a highly-coherent scalable quantum photonic platform, where single-photon sources, waveguides and detectors are integrated on an SOI chip. Our results provide a route towards the implementation of quantum processors, repeaters and sensors compatible with the present-day silicon technology.

摘要

我们在商用绝缘体上硅(SOI)晶圆中创建并分离出高亮度的单光子发射器,其亮度接近每秒10个计数。发射发生在红外光谱范围内,在电信O波段有一条光谱狭窄的零声子线,并且即使经过数天的连续运行也显示出高光稳定性。这些发射器的起源归因于硅中与碳相关的色心之一,即所谓的G中心,这使得可以通过碳和硅同位素进行提纯。此外,我们设想了一个高度相干的可扩展量子光子平台的概念,其中单光子源、波导和探测器集成在一个SOI芯片上。我们的结果为实现与当今硅技术兼容的量子处理器、中继器和传感器提供了一条途径。

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