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Uthibiti wa Born-Oppenheimer×Mtafiti wa Kiasi wa Quantum (Variational Quantum Eigensolver)×
NyanjaUkokotoaji wa KwantamuUkokotoaji wa Kwantamu
FamiliaMachine learningMachine learning
Mwaka wa asili19272014
MwanzilishiMax Born and Julius Robert OppenheimerAlberto Peruzzo
AinaFundamental approximationHybrid quantum-classical algorithm
Chanzo asiliaBorn, M., Oppenheimer, J. R. (1927). Zur Quantentheorie der Moleküle. Annalen der Physik, 84, 457–484. DOI ↗Peruzzo, A., McClean, J., Shadbolt, P., et al. (2014). A variational eigenvalue solver on a photonic quantum processor. Nature Communications, 5, 4213. DOI ↗
Majina mbadalaBO approximation, clamped nucleiVQE, hybrid quantum-classical
Zinazohusiana34
MuhtasariThe Born-Oppenheimer (BO) Approximation is a foundational assumption in molecular quantum mechanics that nuclei can be treated as fixed while solving for electrons, and vice versa. Introduced by Born and Oppenheimer in 1927, this separation reduces the complex many-body electronic-nuclear problem to a sequence of simpler problems, enabling nearly all molecular calculations.The Variational Quantum Eigensolver (VQE) is a hybrid quantum-classical algorithm designed to find the lowest eigenvalue (ground state energy) of a quantum Hamiltonian. Introduced by Peruzzo et al. in 2014, it exploits the variational principle to combine the power of quantum circuits with classical optimization to solve chemistry and materials science problems on near-term quantum devices.
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ScholarGateLinganisha mbinu: Born-Oppenheimer Approximation · Variational Quantum Eigensolver. Imepatikana 2026-06-17 kutoka https://scholargate.app/sw/compare