Interlayer exciton valley polarization dynamics in large magnetic fields

被引:17
|
作者
Holler, Johannes [1 ]
Selig, Malte [2 ]
Kempf, Michael [3 ]
Zipfel, Jonas [1 ,4 ]
Nagler, Philipp [1 ]
Katzer, Manuel [2 ]
Katsch, Florian [2 ]
Ballottin, Mariana, V [5 ]
Mitioglu, Anatolie A. [5 ]
Chernikov, Alexey [1 ,6 ,7 ]
Christianen, Peter C. M. [5 ]
Schueller, Christian [1 ]
Knorr, Andreas [2 ]
Korn, Tobias [3 ]
机构
[1] Univ Regensburg, Inst Expt & Angew Phys, D-93040 Regensburg, Germany
[2] Tech Univ Berlin, Inst Theoret Phys, D-10587 Berlin, Germany
[3] Univ Rostock, Inst Phys, D-18059 Rostock, Germany
[4] Lawrence Berkeley Natl Lab, Mol Foundry, Berkeley, CA 94720 USA
[5] Radboud Univ Nijmegen, High Field Magnet Lab HFML EMFL, NL-6525 ED Nijmegen, Netherlands
[6] Tech Univ Dresden, Dresden Integrated Ctr Appl Phys & Photon Mat IAP, D-01062 Dresden, Germany
[7] Tech Univ Dresden, Wurzburg Dresden Cluster Excellence Ctqmat, D-01062 Dresden, Germany
关键词
HETEROSTRUCTURES; LAYER; MOS2; WS2;
D O I
10.1103/PhysRevB.105.085303
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In van der Waals heterostructures consisting of stacked MoSe2 and WSe2 monolayers, optically bright interlayer excitons can be observed when the constituent layers are crystallographically aligned. The symmetry of the monolayers allows for two different types of alignment, in which the momentum-direct interlayer transitions are either valley conserving (R-type alignment) or change the valley index (H-type antialignment). Here, we study the valley polarization dynamics of interlayer excitons in magnetic fields up to 30 T by time-resolved photoluminescence. For all interlayer exciton types, we find a finite initial photoluminescence circular degree of polarization after unpolarized excitation in applied magnetic fields. For interlayer excitons in H-type heterostructures, we observe a systematic increase of the photoluminescence circular degree of polarization with time in applied magnetic fields, which saturates at values close to unity for the largest fields. By contrast, for interlayer excitons in R-type heterostructures, the photoluminescence circular degree of polarization shows a decrease and a zero crossing before saturating with opposite polarization. This unintuitive behavior can be explained by a model considering the different interlayer exciton states in H- and R-type heterostructures and their selection rules coupling photoluminescence helicity and valley polarization.
引用
收藏
页数:9
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