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Piccinelli, Samuele ; Barison, Stefano ; Baiardi, Alberto ; Tacchino, Francesco ; Repp, Jascha ; Rončević, Igor ; Albrecht, Florian ; Anderson, Harry L. ; Gross, Leo ; Curioni, Alessandro ; Tavernelli, Ivano

A note on large-scale quantum chemistry on quantum computers: the case of a molecule with half-Möbius topology

Piccinelli, Samuele, Barison, Stefano, Baiardi, Alberto, Tacchino, Francesco, Repp, Jascha , Rončević, Igor, Albrecht, Florian, Anderson, Harry L., Gross, Leo, Curioni, Alessandro and Tavernelli, Ivano (2026) A note on large-scale quantum chemistry on quantum computers: the case of a molecule with half-Möbius topology. arXiv 2603.08696.

Date of publication of this fulltext: 13 Mar 2026 05:16
Article
DOI to cite this document: 10.5283/epub.78951


Abstract

We report quantum chemistry calculations performed on superconducting quantum processors for a molecule exhibiting the half-Möbius electronic topology originally introduced by Rončević et al. Using SqDRIFT, a randomized sample-based Krylov quantum diagonalization algorithm, we achieve reliable quantum simulations on active spaces corresponding to 36 orbitals (72 qubits) and extend previous ...

We report quantum chemistry calculations performed on superconducting quantum processors for a molecule exhibiting the half-Möbius electronic topology originally introduced by Rončević et al. Using SqDRIFT, a randomized sample-based Krylov quantum diagonalization algorithm, we achieve reliable quantum simulations on active spaces corresponding to 36 orbitals (72 qubits) and extend previous studies up to 50 orbitals (100 qubits). We demonstrate that a systematic increase of active space sizes, which has a concrete impact on the accuracy of the electronic structure description, is achievable with state-of-the-art quantum processors, thus offering a promising path towards practically relevant quantum-assisted electronic-structure calculations.



Involved Institutions


Details

Item typeArticle
Journal or Publication TitlearXiv
Open Access Type:CC-License
Volume:2603.08696
Date9 March 2026
InstitutionsPhysics > Halle-Berlin-Regensburg Cluster of Excellence CCE
Physics > Institute of Experimental and Applied Physics
Physics > Institute of Experimental and Applied Physics > Group Jascha Repp
Identification Number
ValueType
2603.08696arXiv ID
10.48550/arXiv.2603.08696DOI
Dewey Decimal Classification500 Science > 530 Physics
500 Science > 540 Chemistry & allied sciences
StatusPublished
RefereedNo, this document will not be refereed
Created at the University of RegensburgPartially
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-789519
Item ID78951

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