Quantum information of the Aharanov-Bohm ring with Yukawa interaction in the presence of disclination
arXiv:2206.09261 · doi:10.3390/e24081059
Abstract
We investigate the quantum information by a theoretical measurement approach of an Aharanov-Bohm (AB) ring with Yukawa interaction in curved space with disclination. It obtained the so-called Shannon entropy, through the eigenfunctions of the system. The quantum states considered come from a Schroedinger theory with the AB field in the background of curved space. With this entropy, it can explore the quantum information at the position space and reciprocal space. Furthermore, we discussed how the magnetic field, the AB flux, and the topological defect influence the quantum states and the information entropy.
8 pages, 2 captioned figures, 2 tables
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Cited by in corpus (5)
- Quantum information entropy of a particle trapped by the Aharonov-Bohm-type effect
- Coherence and realism in the Aharonov-Bohm effect
- Quantum-information theory of magnetic field influence on circular dots with different boundary conditions
- Rotating effects on the photoionization cross-section of a 2D quantum ring
- Quantum information entropy of heavy mesons in the presence of a point-like defect