Infrared Interlayer Exciton Emission in MoS2/WSe2 Heterostructures

被引:135
|
作者
Karni, Ouri [1 ]
Barre, Elyse [2 ]
Lau, Sze Cheung [1 ]
Gillen, Roland [3 ]
Ma, Eric Yue [1 ,4 ]
Kim, Bumho [5 ]
Watanabe, Kenji [6 ]
Taniguchi, Takashi [6 ]
Maultzsch, Janina [3 ]
Barmak, Katayun [7 ]
Page, Ralph H. [1 ,4 ]
Heinz, Tony F. [1 ,4 ]
机构
[1] Stanford Univ, Dept Appl Phys, Stanford, CA 94305 USA
[2] Stanford Univ, Dept Elect Engn, Stanford, CA 94305 USA
[3] Friedrich Alexander Univ Erlangen Nurnberg, Dept Phys, Staudstr 7, D-91058 Erlangen, Germany
[4] SLAC Natl Accelerator Lab, Menlo Pk, CA 94025 USA
[5] Columbia Univ, Dept Mech Engn, New York, NY 10027 USA
[6] Natl Inst Mat Sci, 1-1 Namiki, Tsukuba, Ibaraki 3050044, Japan
[7] Columbia Univ, Dept Appl Phys & Appl Math, New York, NY 10027 USA
基金
加拿大自然科学与工程研究理事会; 美国国家科学基金会;
关键词
TRANSITION-METAL DICHALCOGENIDES; SIZE-DEPENDENT INCREASE; BAND ALIGNMENT; WAALS; GRAPHENE; PHOTOLUMINESCENCE; POLARIZATION; DYNAMICS; LAYER;
D O I
10.1103/PhysRevLett.123.247402
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We report light emission around 1 eV (1240 nm) from heterostructures of MoS2 and WSe2 transition metal dichalcogenide monolayers. We identify its origin in an interlayer exciton (ILX) by its wide spectral tunability under an out-of-plane electric field. From the static dipole moment of the state, its temperature and twist-angle dependence, and comparison with electronic structure calculations, we assign this ILX to the fundamental interlayer transition between the K valleys in this system. Our findings gain access to the interlayer physics of the intrinsically incommensurate MOS2/WSe2 heterostructure, including moire and valley pseudospin effects, and its integration with silicon photonics and optical fiber communication systems operating at wavelengths longer than 1150 nm.
引用
收藏
页数:7
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