Quantum state tomography with time-continuous measurements: reconstruction with resource limitations

被引:0
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作者
Areeya Chantasri
Shengshi Pang
Teerawat Chalermpusitarak
Andrew N. Jordan
机构
[1] University of Rochester,Department of Physics and Astronomy
[2] University of Rochester,Center for Coherence and Quantum Optics
[3] Griffith University,Centre for Quantum Computation and Communication Technology (Australian Research Council), Centre for Quantum Dynamics
[4] Mahidol University,Optical and Quantum Physics Laboratory, Department of Physics, Faculty of Science
[5] Chapman University,Institute for Quantum Studies
关键词
Quantum state tomography; Quantum trajectories; Quantum measurement; Bayesian estimation;
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摘要
We propose and analyze quantum state estimation (tomography) using continuous quantum measurements with resource limitations, allowing the global state of many qubits to be constructed from only measuring a few. We give a proof-of-principle investigation demonstrating successful tomographic reconstruction of an arbitrary initial quantum state for three different situations: single qubit, remote qubit, and two interacting qubits. The tomographic reconstruction utilizes only a continuous weak probe of a single qubit observable, a fixed coupling Hamiltonian, together with single-qubit controls. In the single-qubit case, a combination of the continuous measurement of an observable and a Rabi oscillation is sufficient to find all three unknown qubit state components. For two interacting qubits, where only one observable of the first qubit is measured, the control Hamiltonian can be implemented to transfer all quantum information to the measured observable, via the qubit–qubit interaction and Rabi oscillation controls applied locally on each qubit. We discuss different sets of controls by analyzing the unitary dynamics and the Fisher information matrix of the estimation in the limit of weak measurement, and simulate tomographic results numerically. As a result, we obtained reconstructed state fidelities in excess of 0.98 with a few thousand measurement runs.
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页码:23 / 47
页数:24
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