Interlayer exciton dynamics in van der Waals heterostructures

被引:122
|
作者
Ovesen, Simon [1 ]
Brem, Samuel [1 ]
Linderalv, Christopher [1 ]
Kuisma, Mikael [1 ,2 ]
Korn, Tobias [3 ]
Erhart, Paul [1 ]
Selig, Malte [4 ]
Malic, Ermin [1 ]
机构
[1] Chalmers Univ Technol, Dept Phys, S-41296 Gothenburg, Sweden
[2] Univ Jyvaskyla, Nanosci Ctr, Dept Chem, Jyvaskyla 40014, Finland
[3] Univ Rostock, Inst Phys, D-18059 Rostock, Germany
[4] Tech Univ Berlin, Inst Theoret Phys, D-10623 Berlin, Germany
基金
瑞典研究理事会;
关键词
QUANTUM-THEORY; SEMICONDUCTOR; MONOLAYER; OPTOELECTRONICS;
D O I
10.1038/s42005-019-0122-z
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Atomically thin transition metal dichalcogenides can be stacked to van der Waals heterostructures enabling the design of new materials with tailored properties. The strong Coulomb interaction gives rise to interlayer excitons, where electrons and holes are spatially separated in different layers. In this work, we reveal the time- and momentum-dependent elementary processes behind the formation, thermalization and photoemission of interlayer excitons for the exemplary MoSe2-WSe2 heterostructure. We identify tunneling of holes from MoSe2 to WSe2 on a ps timescale as the crucial process for interlayer exciton formation. We also predict a drastic reduction of the formation time as a function of the interlayer energy offset suggesting that interlayer excitons can be externally tuned. Finally, we explain the experimental observation of a dominant photoluminescence from interlayer excitons despite the vanishingly small oscillator strength as a consequence of huge interlayer exciton occupations at low temperatures.
引用
收藏
页数:8
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