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Quantum Calligraphy: Writing Single-Photon Emitters in a Two-Dimensional Materials Platform

机译:Quantum书法:在二维材料平台中写单光子发射器

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摘要

We present a paradigm for encoding strain into two-dimensional materials (2DMs) to create and deterministically place single-photon emitters (SPEs) in arbitrary locations with nanometer-scale precision. Our material platform consists of a 2DM placed on top of a deformable polymer film. Upon application of sufficient mechanical stress using an atomic force microscope tip, the 2DM/polymer composite deforms, resulting in formation of highly localized strain fields with excellent control and repeatability. We show that SPEs are created and localized at these nanoindents and exhibit single-photon emission up to 60 K, the highest temperature reported in these materials. This quantum calligraphy allows deterministic placement and real time design of arbitrary patterns of SPEs for facile coupling with photonic waveguides, cavities, and plasmonic structures. In addition to enabling versatile placement of SPEs, these results present a general methodology for imparting strain into 2DM with nanometer-scale precision, providing an invaluable tool for further investigations and future applications of strain engineering of 2DM and 2DM devices.
机译:我们介绍了一种用于将应变进行编码成二维材料(2DMS)的范例,以在具有纳米级精度的任意位置中创建和确定单光子发射器(SPES)。我们的材料平台由2DM组成,位于可变形的聚合物膜的顶部。在使用原子力显微镜尖端施加足够的机械应力后,2DM /聚合物复合物变形,导致高度局部化的应变场,具有优异的控制和可重复性。我们表明,在这些纳米印料中创建和定位SPE,并将单光子发射显示为60 k,这些材料中报告的最高温度。该量子书法允许具有与光子波导,空腔和等离子体结构的面向耦合的型号的确定性展示和实时设计。除了实现SPE的多功能放置之外,这些结果还具有纳米级精度赋予2DM应变的一般方法,提供了一种可宝贵的工具,用于进一步调查和2DM和2DM器件的应变工程的未来应用。

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