In a recent research (Olivares et al., 2019) we have demonstrated that a homodyne-like scheme, exploiting a “low-intensity” local oscillator, can be used to perform optical state tomography of both quantum and classical states of light. The reconstruction method directly uses the homodyne-like probability distribution retrieved from the detector. Here, we further investigate the role played by the local oscillator in this respect. In particular, we study to some extent how its intensity affects the quantum-state reconstruction procedure by focusing on the case of the Fock states |1〉 and |2〉, whose homodyne-like probability distributions are sensibly affected by the actual value of the LO intensity. The analysis is performed on Monte Carlo simulated experiments taking also into account the quantum detection efficiency.

On the role of the local oscillator intensity in optical homodyne-like tomography / S. Olivares, A. Allevi, M. Bondani. - In: PHYSICS LETTERS A. - ISSN 0375-9601. - (2020). [Epub ahead of print] [10.1016/j.physleta.2020.126354]

On the role of the local oscillator intensity in optical homodyne-like tomography

S. Olivares
Primo
;
M. Bondani
Ultimo
2020

Abstract

In a recent research (Olivares et al., 2019) we have demonstrated that a homodyne-like scheme, exploiting a “low-intensity” local oscillator, can be used to perform optical state tomography of both quantum and classical states of light. The reconstruction method directly uses the homodyne-like probability distribution retrieved from the detector. Here, we further investigate the role played by the local oscillator in this respect. In particular, we study to some extent how its intensity affects the quantum-state reconstruction procedure by focusing on the case of the Fock states |1〉 and |2〉, whose homodyne-like probability distributions are sensibly affected by the actual value of the LO intensity. The analysis is performed on Monte Carlo simulated experiments taking also into account the quantum detection efficiency.
Quantum tomography; Fock states; Photon-number-resolving detectors; Homodyne-like detector
Settore FIS/03 - Fisica della Materia
2020
28-feb-2020
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/720889
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