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- W2195712486 abstract "Strong coupling between the electronic states of monolayer transition metal dichalcogenides (TMDCs) such as ${mathrm{MoS}}_{2},{mathrm{MoSe}}_{2},{mathrm{WS}}_{2}$, or ${mathrm{WSe}}_{2}$, and a single in-plane optical cavity mode gives rise to valley- and spin-dependent cavity-QED effects. The Dirac Hamiltonian for this two-dimensional gapped semiconductor with large spin-orbit coupling facilitates pure Jaynes-Cummings-type coupling with spin-valley locking---providing an additional handle for spintronics using circularly polarized light. Besides being an on-chip light source, the strong cavity coupling causes the TMDC monolayer to act as a spontaneous spin oscillator. In addition, this system can be a sensitive magnetic field sensor for an in-plane magnetic field. It also displays unusual persistent Rabi oscillations between different conduction-band states that are insensitive to small magnetic field variations. Our analysis for dissipation due to finite exciton relaxation times and cavity losses suggests that these effects are observable." @default.
- W2195712486 created "2016-06-24" @default.
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- W2195712486 date "2017-07-25" @default.
- W2195712486 modified "2023-09-25" @default.
- W2195712486 title "Strong cavity-pseudospin coupling in monolayer transition metal dichalcogenides" @default.
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- W2195712486 doi "https://doi.org/10.1103/physrevb.96.035436" @default.
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