Quantum mechanics of a particle confined to a space curve embedded in three-dimensional Euclidean space
At a glance
- Citations
- 0
- References
- 0
- Comments
- 0
Abstract
Investigating a particle, a charged particle in an electromagnetic field and a particle with spin-orbit interaction confined to a space curve in square and circular cases, respectively, we first find that their effective Hamiltonian can be defined in terms of the ground states of their confined dimensions. And we obtain interesting results: the torsion-induced geometric potential appears in the square case, while in the circular case it vanishes; the geometrically induced gauge potential and Zeeman coupling appear in the circular case; and the geometric gauge potential, curvature and torsion simultaneously emerge in the spin-orbit interaction in the circular case. In the example, a helix nanowire, the previous results are all demonstrated. These results provide a way to generate an artificial gauge field and to manipulate spin transport by designing the geometry of curved nanodevice.
Publication details
- OpenAlex
- W2769109217
- Document type
- preprint
- Language
- EN
- Source
- arXiv (Cornell University)
- Last metadata update
Comments
Log in to join the discussion.