Publication | Open Access
Continuous-variable optical quantum-state tomography
1.1K
Citations
212
References
2009
Year
Quantum PhotonicsEngineeringQuantum SensingOptical Homodyne TomographyQuantum ComputingQuantum EntanglementQuantum-state TomographyQuantum SciencePhotonicsQuantum TomographyPhysicsContinuous-variable Quantum-state TomographyPhoton StatisticQuantum OpticNatural SciencesApplied PhysicsBiomedical ImagingOptical Coherence TomographyQuantum Photonic Device
This review covers the latest developments in continuous-variable quantum-state tomography of optical fields and photons, placing a special emphasis on its practical aspects and applications in quantum-information technology. Optical homodyne tomography is reviewed as a method of reconstructing the state of light in a given optical mode. A range of relevant practical topics is discussed, such as state-reconstruction algorithms (with emphasis on the maximum-likelihood technique), the technology of time-domain homodyne detection, mode-matching issues, and engineering of complex quantum states of light. The paper also surveys quantum-state tomography for the transverse spatial state (spatial mode) of the field in the special case of fields containing precisely one photon.
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