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Probing and manipulating valley coherence of dark excitons in monolayer WSe₂

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arxiv 1901.04431 v2 pith:GNPPFQYD submitted 2019-01-14 cond-mat.mes-hall

Probing and manipulating valley coherence of dark excitons in monolayer WSe$_2$

classification cond-mat.mes-hall
keywords excitonsdarkvalleydegreefreedominteractionmonolayerapplied
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Monolayers of semiconducting transition metal dichalcogenides are two-dimensional direct-gap systems which host tightly-bound excitons with an internal degree of freedom corresponding to the valley of the constituting carriers. Strong spin-orbit interaction and the resulting ordering of the spin-split subbands in the valence and conduction bands makes the lowest-lying excitons in WX$_2$ (X~being S or Se) spin-forbidden and optically dark. With polarization-resolved photoluminescence experiments performed on a WSe$_2$ monolayer encapsulated in a hexagonal boron nitride, we show how the intrinsic exchange interaction in combination with the applied in-plane and/or out-of-plane magnetic fields enables one to probe and manipulate the valley degree of freedom of the dark excitons.

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