Telecom-Band Quantum Dots Compatible with Silicon Photonics for Photonic Quantum Applications

Ryota Katsumi, Yasutomo Ota, Mohamed Benyoucef
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Abstract

Silicon photonics is promising for quantum photonics applications owing to its large-scale and high-performance circuitry enabled by complementary-metal-oxide-semiconductor fabrication processes. However, there is a lack of bright single-photon sources (SPSs) capable of deterministic operation on Si platforms, which largely limits their applications. To this end, on-Si integration of high-performance solid-state quantum emitters, such as semiconductor quantum dots (QDs), is greatly desired. In particular, it is preferable to integrate SPSs emitting at telecom wavelengths for fully leveraging the power of silicon photonics, including efficient chip-to-fiber coupling. In this review, recent progress and challenges in the integration of telecom QD SPSs onto silicon photonic platforms are discussed.

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与硅光子技术兼容的电信带量子点,用于光子量子应用
由于互补金属氧化物半导体制造工艺实现了大规模和高性能电路,硅光子学在量子光子学应用中大有可为。然而,在硅平台上缺乏能够确定性运行的明亮单光子源(SPS),这在很大程度上限制了它们的应用。为此,人们迫切希望在硅上集成高性能固态量子发射器,如半导体量子点(QDs)。特别是,最好能集成发射电信波长的 SPS,以充分发挥硅光子学的威力,包括高效的芯片到光纤耦合。本综述讨论了在硅光子平台上集成电信 QD SPS 的最新进展和挑战。
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