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  5. Valley addressable exciton-polaritons in atomically thin semiconductors

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Preprint
English
2016

Valley addressable exciton-polaritons in atomically thin semiconductors

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0 Files

English
2016
arXiv (Cornell University)
DOI: 10.48550/arxiv.1612.05073

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Konstantin ‘kostya’  Novoselov
Konstantin ‘kostya’ Novoselov

The University of Manchester

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S. Dufferwiel
T. P. Lyons
D. D. Solnyshkov
+9 more

Abstract

While conventional semiconductor technology relies on the manipulation of electrical charge for the implementation of computational logic, additional degrees of freedom such as spin and valley offer alternative avenues for the encoding of information. In transition metal dichalcogenide (TMD) monolayers, where spin-valley locking is present, strong retention of valley chirality has been reported for MoS$_2$, WSe$_2$ and WS$_2$ while MoSe$_2$ shows anomalously low valley polarisation retention. In this work, chiral selectivity of MoSe$_2$ cavity polaritons under helical excitation is reported with a polarisation degree that can be controlled by the exciton-cavity detuning. In contrast to the very low circular polarisation degrees seen in MoSe$_2$ exciton and trion resonances, we observe a significant enhancement of up to 7 times when in the polaritonic regime. Here, polaritons introduce a fast decay mechanism which inhibits full valley pseudospin relaxation and thus allows for increased retention of injected polarisation in the emitted light. A dynamical model applicable to cavity-polaritons in any TMD semiconductor, reproduces the detuning dependence through the incorporation of the cavity-modified exciton relaxation, allowing an estimate of the spin relaxation time in MoSe$_2$ which is an order of magnitude faster than those reported in other TMDs. The valley addressable exciton-polaritons reported here offer robust valley polarised states demonstrating the prospect of valleytronic devices based upon TMDs embedded in photonic structures, with significant potential for valley-dependent nonlinear polariton-polariton interactions.

How to cite this publication

S. Dufferwiel, T. P. Lyons, D. D. Solnyshkov, A. A. P. Trichet, Freddie Withers, Štefan Schwarz, G. Malpuech, J. M. Smith, Konstantin ‘kostya’ Novoselov, M. S. Skolnick, D. N. Krizhanovskii, A. I. Tartakovskii (2016). Valley addressable exciton-polaritons in atomically thin semiconductors. arXiv (Cornell University), DOI: 10.48550/arxiv.1612.05073.

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Publication Details

Type

Preprint

Year

2016

Authors

12

Datasets

0

Total Files

0

Language

English

Journal

arXiv (Cornell University)

DOI

10.48550/arxiv.1612.05073

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