Optical polarization and intervalley scattering in single layers of MoS2 and MoSe2

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作者
G. Kioseoglou
A. T. Hanbicki
M. Currie
A. L. Friedman
B. T. Jonker
机构
[1] University of Crete,Department of Materials Science and Technology
[2] Heraklion Crete,Materials Science & Technology Division
[3] Institute of Electronic Structure and Laser (IESL),Optical Sciences Division
[4] Foundation for Research and Technology Hellas (FORTH),undefined
[5] Heraklion Crete,undefined
[6] Naval Research Laboratory,undefined
[7] Naval Research Laboratory,undefined
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Single layers of MoS2 and MoSe2 were optically pumped with circularly polarized light and an appreciable polarization was initialized as the pump energy was varied. The circular polarization of the emitted photoluminescence was monitored as a function of the difference between the excitation energy and the A-exciton emission at the K-point of the Brillouin zone. Our results show a threshold of twice the LA phonon energy, specific to the material, above which phonon-assisted intervalley scattering causes depolarization. In both materials this leads to almost complete depolarization within ~100 meV above the threshold energy. We identify the extra kinetic energy of the exciton (independent of whether it is neutral or charged) as the key parameter for presenting a unifying picture of the depolarization process.
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