Nature of Long-Lived Moire Interlayer Excitons in Electrically Tunable MoS2/MoSe2 Heterobilayers

被引:0
|
作者
Alexeev, Evgeny M. [1 ,2 ]
Purser, Carola M. [1 ,2 ]
Gilardoni, Carmem M. [2 ]
Kerfoot, James [1 ]
Chen, Hao [1 ]
Cadore, Alisson R. [1 ,3 ]
Rosa, BarbaraL. T. [1 ]
Feuer, Matthew S. G. [2 ]
Javary, Evans [2 ,4 ]
Hays, Patrick [5 ]
Watanabe, Kenji [6 ]
Taniguchi, Takashi [7 ]
Tongay, Seth Ariel [5 ]
Kara, Dhiren M. [2 ]
Atature, Mete [2 ]
Ferrari, Andrea C. [1 ]
机构
[1] Univ Cambridge, Cambridge Graphene Ctr, Cambridge CB3 0FA, England
[2] Univ Cambridge, Cavendish Lab, Cambridge CB3 0HE, England
[3] Brazilian Ctr Res Energy & Mat CNPEM, Brazilian Nanotechnol Natl Lab LNNano, BR-13083849 Sao Paulo, Brazil
[4] PSL, Ecole Normale Super, F-75005 Paris, France
[5] Arizona State Univ, Mat Sci & Engn, Sch Engn Matter Transport & Energy, Tempe, AZ 85287 USA
[6] Natl Inst Mat Sci, Res Ctr Elect & Opt Mat, Tsukuba 3050044, Japan
[7] Natl Inst Mat Sci, Res Ctr Mat Nanoarchitecton, Tsukuba 3050044, Japan
基金
英国工程与自然科学研究理事会;
关键词
layered materials heterostructures; transition-metaldichalcogenides; interlayer excitons; moiresuperlattice; valley polarization; Stark shift; photoluminescence; VALLEY; IDENTIFICATION; POLARIZATION; MOMENTUM; DYNAMICS; GRAPHENE;
D O I
10.1021/acs.nanolett.4c02635
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Interlayer excitons in transition-metal dichalcogenide heterobilayers combine high binding energy and valley-contrasting physics with a long optical lifetime and strong dipolar character. Their permanent electric dipole enables electric-field control of the emission energy, lifetime, and location. Device material and geometry impact the nature of the interlayer excitons via their real- and momentum-space configurations. Here, we show that interlayer excitons in MoS2/MoSe2 heterobilayers are formed by charge carriers residing at the Brillouin zone edges, with negligible interlayer hybridization. We find that the moire superlattice leads to the reversal of the valley-dependent optical selection rules, yielding a positively valued g-factor and cross-polarized photoluminescence. Time-resolved photoluminescence measurements reveal that the interlayer exciton population retains the optically induced valley polarization throughout its microsecond-long lifetime. The combination of a long optical lifetime and valley polarization retention makes MoS2/MoSe2 heterobilayers a promising platform for studying fundamental bosonic interactions and developing excitonic circuits for optical information processing.
引用
收藏
页码:11232 / 11238
页数:7
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