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利用X射线显微镜筛选自组装量子点作为单光子源

Culling a Self-Assembled Quantum Dot as a Single-Photon Source Using X-ray Microscopy.

作者信息

Dey Arka Bikash, Sanyal Milan K, Schropp Andreas, Achilles Silvio, Keller Thomas F, Farrer Ian, Ritchie David A, Bertram Florian, Schroer Christian G, Seeck Oliver H

机构信息

Deutsches Elektronen-Synchrotron DESY, Notkestraße 85, 22607 Hamburg, Germany.

Surface Physics and Material Science Division, Saha Institute of Nuclear Physics, Kolkata, West Bengal 700064, India.

出版信息

ACS Nano. 2023 Aug 22;17(16):16080-16088. doi: 10.1021/acsnano.3c04835. Epub 2023 Jul 31.

Abstract

Epitaxially grown self-assembled semiconductor quantum dots (QDs) with atom-like optical properties have emerged as the best choice for single-photon sources required for the development of quantum technology and quantum networks. Nondestructive selection of a single QD having desired structural, compositional, and optical characteristics is essential to obtain noise-free, fully indistinguishable single or entangled photons from single-photon emitters. Here, we show that the structural orientations and local compositional inhomogeneities within a single QD and the surrounding wet layer can be probed in a screening fashion by scanning X-ray diffraction microscopy and X-ray fluorescence with a few tens of nanometers-sized synchrotron radiation beam. The presented measurement protocol can be used to cull the best single QD from the enormous number of self-assembled dots grown simultaneously. The obtained results show that the elemental composition and resultant strain profiles of a QD are sensitive to in-plane crystallographic directions. We also observe that lattice expansion after a certain composition-limit introduces shear strain within a QD, enabling the possibility of controlled chiral-QD formation. Nanoscale chirality and compositional anisotropy, contradictory to common assumptions, need to be incorporated into existing theoretical models to predict the optical properties of single-photon sources and to further tune the epitaxial growth process of self-assembled quantum structures.

摘要

具有类原子光学特性的外延生长自组装半导体量子点(QD),已成为量子技术和量子网络发展所需单光子源的最佳选择。无损选择具有所需结构、成分和光学特性的单个量子点,对于从单光子发射器获得无噪声、完全不可区分的单光子或纠缠光子至关重要。在此,我们表明,通过使用几十纳米大小的同步辐射光束进行扫描X射线衍射显微镜和X射线荧光分析,可以以筛选的方式探测单个量子点及其周围湿层内的结构取向和局部成分不均匀性。所提出的测量方案可用于从同时生长的大量自组装量子点中挑选出最佳的单个量子点。所得结果表明,量子点的元素组成和由此产生的应变分布对面内晶体学方向敏感。我们还观察到,在达到一定成分极限后,晶格膨胀会在量子点内引入剪切应变,从而使得可控手性量子点的形成成为可能。与常见假设相反,纳米级手性和成分各向异性需要纳入现有理论模型,以预测单光子源的光学特性,并进一步调整自组装量子结构的外延生长过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07f0/10763734/dc3925276387/nn3c04835_0001.jpg

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