Understanding Energy Level Structure Using Quantum Rubik's Cube

Fuente: arXiv
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Main Authors: Wang, Yu, Bo, Maolin
Format: Preprint
Published: 2024
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author Wang, Yu
Bo, Maolin
author_facet Wang, Yu
Bo, Maolin
contents This study combines the quantum Rubik's Cube matrix with the Benalcazar Bernevig Hughes model, defines a matrix algorithm based on the reverse process of convolution, and constructs an expression for the quantum Rubik's Cube matrix and Hamiltonian. Furthermore, in order to make the operation of the quantum Rubik's Cube matrix clearer, we use a Josephus ring to draw a topological graph of the Rubik's Cube expansion. This article uses a quantum Rubik's Cube to calculate energy level transitions of electrons, and shows that its operation corresponds to path integration. The band dispersion is obtained. This work provides new ideas and methods for calculating Hamiltonians and studying energy level structure.
format Preprint
id arxiv_https___arxiv_org_abs_2403_01195
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Understanding Energy Level Structure Using Quantum Rubik's Cube
Wang, Yu
Bo, Maolin
Quantum Physics
Chemical Physics
This study combines the quantum Rubik's Cube matrix with the Benalcazar Bernevig Hughes model, defines a matrix algorithm based on the reverse process of convolution, and constructs an expression for the quantum Rubik's Cube matrix and Hamiltonian. Furthermore, in order to make the operation of the quantum Rubik's Cube matrix clearer, we use a Josephus ring to draw a topological graph of the Rubik's Cube expansion. This article uses a quantum Rubik's Cube to calculate energy level transitions of electrons, and shows that its operation corresponds to path integration. The band dispersion is obtained. This work provides new ideas and methods for calculating Hamiltonians and studying energy level structure.
title Understanding Energy Level Structure Using Quantum Rubik's Cube
topic Quantum Physics
Chemical Physics
url https://arxiv.org/abs/2403.01195