4.7 Article

Method for generating randomly perturbed density operators subject to different sets of constraints

期刊

QUANTUM INFORMATION PROCESSING
卷 21, 期 9, 页码 -

出版社

SPRINGER
DOI: 10.1007/s11128-022-03651-1

关键词

IBMQ; Qiskit; Quantum computation; Entanglement; Random quantum states; Perturbed quantum states

资金

  1. National Council of Science and Technology (CONACyT), Mexico [CVU-736083]
  2. U.S. Department of Defense

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This paper presents a general method for generating randomly perturbed density operators under different sets of constraints. It examines the sensitivity of various entanglement measures to the perturbation magnitude and simulates the results of real quantum devices.
This paper presents a general method for producing randomly perturbed density operators subject to different sets of constraints. The perturbed density operators are a specified distance away from the state described by the original density operator. This approach is applied to a bipartite system of qubits and used to examine the sensitivity of various entanglement measures on the perturbation magnitude. The constraint sets used include constant energy, constant entropy, and both constant energy and entropy. The method is then applied to produce perturbed random quantum states that correspond with those obtained experimentally for Bell states on the IBM quantum device ibmq_manila. The results show that the methodology can be used to simulate the outcome of real quantum devices where noise, which is important both in theory and simulation, is present.

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