Spin- and valley- dependent energy band and polarization in ferromagnetic silicene superlattice with circularly polarized light

We investigated the spin- and valley-dependent energy band and transport properties in ferromagnetic silicene superlattice with an off-resonant circularly polarized light. It is obviously found that the spin- and valley-dependent energy gap can be well tuned via the off-resonant circularly polarized...

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Veröffentlicht in:Physica. B, Condensed matter Condensed matter, 2021-01, Vol.601, p.412552, Article 412552
Hauptverfasser: Chang, Lu-Lu, Wu, Qing-Ping, Zhang, Ruo-Long, Li, Yu-Zeng, Liu, Mei-Rong, Xiao, Xian-Bo, Liu, Zheng-Fang
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Sprache:eng
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Zusammenfassung:We investigated the spin- and valley-dependent energy band and transport properties in ferromagnetic silicene superlattice with an off-resonant circularly polarized light. It is obviously found that the spin- and valley-dependent energy gap can be well tuned via the off-resonant circularly polarized light. Fully spin and valley-polarized can be realized in certain ranges of light intensity. What is particularly interesting is that by slightly adjusting the energy of the light field, the valley polarization can be suddenly reversed from 100% to -100%. Thus, our results are expected to be informative for switching devices related to valleytronics. •Spin and valley energy gaps can be tuned via the off-resonant polarized light.•Energy range of full spin polarization and full valley polarization is enhanced.•Perfect valley switch effect is achieved by only modeling circularly polarized light.
ISSN:0921-4526
1873-2135
DOI:10.1016/j.physb.2020.412552