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

被引:104
|
作者
Rosenberger, Matthew R. [1 ,4 ]
Dass, Chandriker Kavir [2 ,3 ]
Chuang, Hsun-Jen [1 ,5 ]
Sivaram, Saujan V. [1 ,4 ]
McCreary, Kathleen M. [1 ]
Hendrickson, Joshua R. [2 ]
Jonker, Berend T. [1 ]
机构
[1] Naval Res Lab, Mat Sci & Technol Div, Washington, DC 20375 USA
[2] US Air Force, Sensors Directorate, Res Lab, Wright Patterson AFB, OH 45433 USA
[3] KBRwyle, Beavercreek, OH 45431 USA
[4] CNR, Naval Res Lab, Washington, DC 20418 USA
[5] Amer Soc Engn Educ, Naval Res Lab, Washington, DC USA
关键词
two-dimensional materials; tungsten diselenide; strain engineering; single-photon emitter; atomic force microscopy; LIGHT; EMISSION; MONO;
D O I
10.1021/acsnano.8b08730
中图分类号
O6 [化学];
学科分类号
0703 ;
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.
引用
收藏
页码:904 / 912
页数:9
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