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Implementation of a quantum algorithm to estimate the energy of a particle in a finite square well potential on IBM quantum computer

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EUROPEAN PHYSICAL JOURNAL PLUS
卷 136, 期 7, 页码 -

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SPRINGER HEIDELBERG
DOI: 10.1140/epjp/s13360-021-01743-y

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In this paper, a quantum algorithm is implemented on IBM quantum devices to find the energy values of a particle in a finite square-well potential. Results show that the circuits successfully simulate the system, but scattered results lead to the optimization of the circuit.
In this paper, we implement a quantum algorithm-on IBM quantum devices, IBM QASM simulator and PPRC computer cluster-to find the energy values of the ground state and the first excited state of a particle in a finite square-well potential. We use the quantum phase estimation technique and the iterative one to execute the program on PPRC cluster and IBM devices, respectively. Our results obtained from executing the quantum circuits on the IBM classical devices show that our circuits succeed at simulating the system. However, duo to scattered results, we execute only the iterative phase estimation part of the circuit on the 5 qubit quantum devices to reduce the circuit size and obtain low-scattered results.

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