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September 11, 2015Physical Review Letters444 citationsOpen Access

Chiral Phonons at High-Symmetry Points in Monolayer Hexagonal Lattices

LZLifa ZhangQNQian Niu

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Abstract

In monolayer hexagonal lattices, the intravalley and intervalley scattering of electrons can involve chiral phonons at Brillouin-zone center and corners, respectively. At these high-symmetry points, there is a threefold rotational symmetry endowing phonon eigenmodes with a quantized pseudoangular momentum, which includes orbital and spin parts. Conservation of pseudoangular momentum yields selection rules for intravalley and intervalley scattering of electrons by phonons. Concrete predictions of helicity-resolved optical phenomena are made on monolayer molybdenum disulfide. The chiral phonons at Brillouin-zone corners excited by polarized photons can be detected by a valley phonon Hall effect. The chiral phonons, together with phonon circular polarization, phonon pseudoangular momentum, selection rules, and valley phonon Hall effect will extend the basis for valley-based electronics and phononics applications in the future.

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Cite This Study

Zhang et al. (2015) studied this question.

synapsesocial.com/papers/69dabfcca6045d71bfa3e192https://doi.org/10.1103/physrevlett.115.115502
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