Symmetry-Checking in Band Structure Calculations on a Noisy Quantum Computer

Fuente: arXiv
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Autori principali: Zhang, Shaobo, Karim, Akib, Quiney, Harry M., Usman, Muhammad
Natura: Preprint
Pubblicazione: 2025
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author Zhang, Shaobo
Karim, Akib
Quiney, Harry M.
Usman, Muhammad
author_facet Zhang, Shaobo
Karim, Akib
Quiney, Harry M.
Usman, Muhammad
contents Band crossings in electronic band structures play an important role in determining the electronic, topological, and transport properties in solid-state systems, making them central to both condensed matter physics and materials science. The emergence of noisy intermediate-scale quantum (NISQ) processors has sparked great interest in developing quantum algorithms to compute band structure properties of materials. While significant research has been reported on computing ground state and excited state energy bands in the presence of noise that breaks the degeneracy, identifying the symmetry at crossing points using quantum computers is still an open question. In this work, we propose a method for identifying the symmetry of bands around crossings and anti-crossings in the band structure of bilayer graphene with two distinct configurations on a NISQ device. The method utilizes eigenstates at neighbouring $\mathbf{k}$ points on either side of the touching point to recover the local symmetry by implementing a character-checking quantum circuit that uses ancilla qubit measurements for a probabilistic test. We then evaluate the performance of our method under a depolarizing noise model, using four distinct matrix representations of symmetry operations to assess its robustness. Finally, we demonstrate the reliability of our method by correctly identifying the correct band crossings of AA-stacked bilayer graphene around $K$ point, using the character-checking circuit implemented on a noisy IBM quantum processor $ibm\_marrakesh$.
format Preprint
id arxiv_https___arxiv_org_abs_2506_20483
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Symmetry-Checking in Band Structure Calculations on a Noisy Quantum Computer
Zhang, Shaobo
Karim, Akib
Quiney, Harry M.
Usman, Muhammad
Quantum Physics
Band crossings in electronic band structures play an important role in determining the electronic, topological, and transport properties in solid-state systems, making them central to both condensed matter physics and materials science. The emergence of noisy intermediate-scale quantum (NISQ) processors has sparked great interest in developing quantum algorithms to compute band structure properties of materials. While significant research has been reported on computing ground state and excited state energy bands in the presence of noise that breaks the degeneracy, identifying the symmetry at crossing points using quantum computers is still an open question. In this work, we propose a method for identifying the symmetry of bands around crossings and anti-crossings in the band structure of bilayer graphene with two distinct configurations on a NISQ device. The method utilizes eigenstates at neighbouring $\mathbf{k}$ points on either side of the touching point to recover the local symmetry by implementing a character-checking quantum circuit that uses ancilla qubit measurements for a probabilistic test. We then evaluate the performance of our method under a depolarizing noise model, using four distinct matrix representations of symmetry operations to assess its robustness. Finally, we demonstrate the reliability of our method by correctly identifying the correct band crossings of AA-stacked bilayer graphene around $K$ point, using the character-checking circuit implemented on a noisy IBM quantum processor $ibm\_marrakesh$.
title Symmetry-Checking in Band Structure Calculations on a Noisy Quantum Computer
topic Quantum Physics
url https://arxiv.org/abs/2506.20483