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The geometric potential of a double-frequency corrugated surface
Authors:Wei-Ran Cao  Yong-Long Wang  Xiao-Lei Chen  Hua Jiang  Chang-Tan Xu  Hong-Shi Zong
Institution:1. School of Physics and Electronic Engineering, Linyi University, Linyi 276005, PR China;2. Department of Physics, Nanjing University, Nanjing 210093, PR China;3. Linyi Radio Frequency and Station Management, Linyi 276000, PR China;4. Joint Center for Particle, Nuclear Physics and Cosmology, Nanjing 210093, PR China;5. State Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, CAS, Beijing 100190, PR China
Abstract:For an electron confined to a surface reconstructed by double-frequency corrugations, we give the effective Hamiltonian by the formula of geometric influences, obtain an additive scalar potential induced by curvature that consists of attractive wells with different depth. The difference is generated by the multiple frequency of the double-frequency corrugation. Subsequently, we investigate the effects of geometric potential on the transmission probability, and find the resonant tunneling peaks becoming rapidly sharper and the transmission gaps being substantially widened with increasing the multiple frequency. As a potential application, double-frequency corrugations can be employed to select electrons with particular incident energy, as an electronic switch, which are more effective than a single-frequency ones.
Keywords:Corresponding author at: School of Physics and Electronic Engineering  Linyi University  Linyi 276005  PR China    Thin-layer quantization formalism  Geometric potential  Dirac comb  Curvature-tunable filter  Geometric effects induced by curvature
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