Xiaotong Chen
Emory University
16 Papers
89 Citations
Xiaotong Chen is an academic researcher from Emory University. The author has contributed to research in topics: Ultimate tensile strength & Crystallite. The author has an hindex of 4, co-authored 4 publications.
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Papers
Entanglement of single-photons and chiral phonons in atomically thin WSe 2
Xiaotong Chen,Xin Lu,Sudipta Dubey,Qiang Yao,Sheng Liu,Xingzhi Wang,Qihua Xiong,Lifa Zhang,Ajit Srivastava +8 more
TL;DR: In this article, the authors reported entanglement between collective, chiral vibrations in a two-dimensional WSe2 host and single-photons emitted from quantum dots (QDs) present in it.
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Optical initialization of a single spin-valley in charged WSe 2 quantum dots
Xin Lu,Xiaotong Chen,Sudipta Dubey,Qiang Yao,Weijie Li,Xingzhi Wang,Qihua Xiong,Ajit Srivastava +7 more
TL;DR: This work provides unambiguous evidence for localized holes with a net spin in optically active WSe2 quantum dots and initialize their spin-valley state with the helicity of the excitation laser under small magnetic fields, estimating a lower bound of the valley lifetime of a single charge in a quantum dot from the recombination time to be of the order of nanoseconds.
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Optical control of a single spin-valley in charged WSe$_2$ quantum dots.
TL;DR: In this article, localized holes with net spin in optically active WSe$_2$ quantum dots (QDs) were shown to control their spin-valley state with the helicity of the excitation laser under small magnetic field.
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Entanglement of single-photons and chiral phonons in atomically thin WSe$_2$
Xiaotong Chen,Xin Lu,Sudipta Dubey,Qiang Yao,Sheng Liu,Xingzhi Wang,Qihua Xiong,Lifa Zhang,Ajit Srivastava +8 more
TL;DR: In this paper, the authors report entanglement between collective, chiral vibrations in two-dimensional (2D) WSe$_2$ host and single-photons emitted from quantum dots (QDs) present in it.
42
How Surface Orientation Affects Coalescence-Induced Droplet Jumping Behavior and Subsequent Atmospheric Corrosion Resistance of a Superhydrophobic Surface?
TL;DR: In this article , the effect of the surface orientation on the coalescence-induced droplet jumping behavior and subsequent atmospheric corrosion resistance of the knife-like structure CuO superhydrophobic surface were studied.
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