{"ID":23560526,"CreatedAt":"2026-09-18T04:32:43.450744143Z","UpdatedAt":"2026-09-18T04:32:43.450744143Z","DeletedAt":null,"paper_url":"https://arxiv.org/abs/2609.20464","arxiv_id":"2609.20464","title":"Neutral atom quantum computing for materials science and quantum chemistry","abstract":"Neutral atom arrays have emerged as versatile platforms for performing both digital and analogue quantum computing and simulation, with demonstrations ranging from large-scale programmable Hamiltonians realising topological phases or weighted graph optimisation to error-corrected logical qubits with transverse gate operations. This paper provides a broad overview to the neutral atom platform, and the potential applications relevant to materials science and quantum chemistry.","short_abstract":"Neutral atom arrays have emerged as versatile platforms for performing both digital and analogue quantum computing and simulation, with demonstrations ranging from large-scale programmable Hamiltonians realising topological phases or weighted graph optimisation to error-corrected logical qubits with transverse gate ope...","url_abs":"https://arxiv.org/abs/2609.20464","url_pdf":"https://arxiv.org/pdf/2609.20464v1","authors":"[\"J. D. Pritchard\"]","published":"2026-09-17T14:25:31Z","proceeding":"quant-ph","tasks":"[\"quant-ph\",\"physics.atom-ph\"]","methods":"[]","has_code":false}
