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Experimental Methods for Spin- and Angle-Resolved Photoemission Spectroscopy Combined with Polarization-Variable Laser
Published on: June 28, 2018
Magnetic-Field-Induced Rotation of Polarized Light Emission from Monolayer WS_{2}
Robert Schmidt1, Ashish Arora1, Gerd Plechinger2
1Institute of Physics and Center for Nanotechnology, University of Münster, 48149 Münster, Germany.
Abstract:
We control the linear polarization of emission from the coherently emitting K^{+} and K^{-} valleys (valley coherence) in monolayer WS_{2} with an out-of-plane magnetic field of up to 25 T. The magnetic-field-induced valley Zeeman splitting causes a rotation of the emission polarization with respect to the excitation by up to 35° and reduces the polarization degree by up to 16%. We explain both of these phenomena with a model based on two noninteracting coherent two-level systems. We deduce that the coherent light emission from the valleys decays with a time constant of τ_{c}=260 fs.
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