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Valley control by linearly polarized laser pulses: example of WSe<sub>2</sub>

S. Sharma, Peter Elliott, S. Shallcross

2022Optica22 citationsDOIOpen Access PDF

Abstract

Electrons at the band edges of materials are endowed with a valley index, a quantum number locating the band edge within the Brillouin zone. An important question is then how this index may be controlled by laser pulses, with current understanding that it couples exclusively via circularly polarized light. Employing both tight-binding and state-of-the-art time dependent density function theory, we show that on femtosecond time scales valley coupling is a much more general effect. We find that two time separated linearly polarized pulses allow almost complete control over valley excitation, with the pulse time difference and polarization vectors emerging as key parameters for valley control. Our findings highlight the possibility of controlling coherent electronic excitation by successive femtosecond laser pulses, and offer a route towards valleytronics in two-dimensional materials.

Topics & Concepts

FemtosecondBrillouin zoneLinear polarizationLaserValleytronicsExcitationPolarization (electrochemistry)PhysicsOpticsElectronQuantum controlCoupling (piping)Coherent controlMaterials scienceCondensed matter physicsQuantumQuantum mechanicsChemistryFerromagnetismMetallurgySpintronicsPhysical chemistry2D Materials and ApplicationsNanowire Synthesis and ApplicationsChalcogenide Semiconductor Thin Films
Valley control by linearly polarized laser pulses: example of WSe<sub>2</sub> | Litcius