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- W2891640509 abstract "For light-intensity-correlation measurements, different methods are used in the high-photon-number or high-intensity regime and in the single- and two-photon regime. Hence, there is an unfortunate measurement “gap” primarily for multiphoton, quantum states. These states, for example, multiphoton Fock states, will be increasingly important in the realization of quantum technologies and in exploring the boundaries between quantum and classical optics. We show that a naïve approach based on attenuation, state splitting, and two-detector correlation can give the correct two-time intensity correlation for any state. We analyze how added losses decrease the measurement systematic error. The price to be paid is that the losses increase the measurement statistical error or, alternatively, increase the acquisition time for a given tolerable level of statistical error. We have experimentally demonstrated the feasibility of the method for a coherent state and a quasithermal state. The method is easy to implement in any laboratory and will simplify characterization of medium and highly excited nonclassical states as they become experimentally available.Received 16 March 2018DOI:https://doi.org/10.1103/PhysRevA.98.033812©2018 American Physical SocietyPhysics Subject Headings (PhySH)Research AreasPhoton statisticsQuantum opticsTechniquesPhoton countingAtomic, Molecular & Optical" @default.
- W2891640509 created "2018-09-27" @default.
- W2891640509 creator A5005206397 @default.
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- W2891640509 date "2018-09-10" @default.
- W2891640509 modified "2023-09-30" @default.
- W2891640509 title "Measurement of the two-time intensity-correlation function of arbitrary states" @default.
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- W2891640509 doi "https://doi.org/10.1103/physreva.98.033812" @default.
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