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来自光子晶体腔中量子点的电信波长下珀塞尔增强单光子。

Purcell-enhanced single photons at telecom wavelengths from a quantum dot in a photonic crystal cavity.

作者信息

Phillips Catherine L, Brash Alistair J, Godsland Max, Martin Nicholas J, Foster Andrew, Tomlinson Anna, Dost René, Babazadeh Nasser, Sala Elisa M, Wilson Luke, Heffernan Jon, Skolnick Maurice S, Fox A Mark

机构信息

Department of Physics and Astronomy, University of Sheffield, Sheffield, UK.

EPSRC National Epitaxy Facility, Department of Electronic and Electrical Engineering, University of Sheffield, Sheffield, UK.

出版信息

Sci Rep. 2024 Feb 23;14(1):4450. doi: 10.1038/s41598-024-55024-6.

Abstract

Quantum dots are promising candidates for telecom single photon sources due to their tunable emission across the different low-loss telecommunications bands, making them compatible with existing fiber networks. Their suitability for integration into photonic structures allows for enhanced brightness through the Purcell effect, supporting efficient quantum communication technologies. Our work focuses on InAs/InP QDs created via droplet epitaxy MOVPE to operate within the telecoms C-band. We observe a short radiative lifetime of 340 ps, arising from a Purcell factor of 5, owing to integration of the QD within a low-mode-volume photonic crystal cavity. Through in-situ control of the sample temperature, we show both temperature tuning of the QD's emission wavelength and a preserved single photon emission purity at temperatures up to 25K. These findings suggest the viability of QD-based, cryogen-free C-band single photon sources, supporting applicability in quantum communication technologies.

摘要

量子点因其在不同低损耗电信频段具有可调谐发射特性,有望成为电信单光子源,使其能与现有光纤网络兼容。它们适合集成到光子结构中,通过珀塞尔效应提高亮度,支持高效量子通信技术。我们的工作重点是通过液滴外延金属有机气相外延(MOVPE)制备的InAs/InP量子点,使其在电信C波段内运行。我们观察到其辐射寿命短至340皮秒,这是由于珀塞尔因子为5,这是因为量子点集成在低模体积光子晶体腔中。通过对样品温度的原位控制,我们展示了量子点发射波长的温度调谐以及在高达25K的温度下仍保持的单光子发射纯度。这些发现表明基于量子点的无低温冷却C波段单光子源具有可行性,支持其在量子通信技术中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa8c/11310300/795aec8d751a/41598_2024_55024_Fig1_HTML.jpg

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