Publication | Closed Access
Quantum chemistry beyond Born–Oppenheimer approximation on a quantum computer: A simulated phase estimation study
51
Citations
58
References
2016
Year
EngineeringComputational ChemistryChemistryEnergy MinimizationMolecular ComputingHydrogen MoleculeMolecular Orbital MethodQuantum ComputingQuantum SimulationQuantum ComputerMolecular SimulationComputational BiochemistryQuantum SciencePhysicsComputational ApproachesQuantum AlgorithmComputational StudiesPhysical ChemistryQuantum ChemistryAb-initio MethodNatural SciencesBorn–oppenheimer ApproximationEfficient Quantum Algorithm
We present an efficient quantum algorithm for beyond‐Born–Oppenheimer molecular energy computations. Our approach combines the quantum full configuration interaction method with the nuclear orbital plus molecular orbital method. We give the details of the algorithm and demonstrate its performance by classical simulations. Two isotopomers of the hydrogen molecule (H 2 , HT) were chosen as representative examples and calculations of the lowest rotationless vibrational transition energies were simulated. © 2016 Wiley Periodicals, Inc.
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