Print ISSN:1674-1056  |  Online ISSN:2058-3834  |  CN:11-5639/O4
  • Cite this article:

    Run Cheng, Hao Zhao, Cui-Bai Luo, Xuan Zhou, Bi-Li Wang, Yan-Biao Li, Jun Wang. Quantum dynamics within curved thin layers with deviationJ. Chin. Phys. B, 2024, 33(7): 076801.
    Run Cheng, Hao Zhao, Cui-Bai Luo, Xuan Zhou, Bi-Li Wang, Yan-Biao Li, Jun Wang. Quantum dynamics within curved thin layers with deviationJ. Chin. Phys. B, 2024, 33(7): 076801.
  • Quantum dynamics within curved thin layers with deviation

    • Combining the deviation between thin layers’ adjacent surfaces with the confining potential method applied to the quantum curved systems, we derive the effective Schrödinger equation describing the particle constrained within a curved layer, accompanied by a general geometric potential Vgq composed of a compression-corrected geometric potential Vgq* and a novel potential Vgq** brought by the deviation. Applying this analysis to the cylindrical layer emerges two types of deviation-induced geometric potential, resulting from the the cases of slant deviation and tangent deviation, respectively, which strongly renormalizes the purely geometric potential and contribute to the energy spectrum based on a very substantial deepening of bound states they offer.
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