English

High-fidelity spatially resolved multiphoton counting for quantum imaging applications

Quantum Physics 2015-08-04 v1 Computational Physics Data Analysis, Statistics and Probability Instrumentation and Detectors Optics

Abstract

We present a method for spatially resolved multiphoton counting based on an intensified camera with the retrieval of multimode photon statistics fully accounting for non-linearities in the detection process. The scheme relies on one-time quantum tomographic calibration of the detector. Faithful, high-fidelity reconstruction of single- and two-mode statistics of multiphoton states is demonstrated for coherent states and their statistical mixtures. The results consistently exhibit classical values of Mandel and Fano parameters in contrast to raw statistics of camera photo-events. Detector operation is reliable for illumination levels up to the average of one photon per an event area, substantially higher than in previous approaches to characterize quantum statistical properties of light with spatial resolution.

Keywords

Cite

@article{arxiv.1405.4400,
  title  = {High-fidelity spatially resolved multiphoton counting for quantum imaging applications},
  author = {Radoslaw Chrapkiewicz and Wojciech Wasilewski and Konrad Banaszek},
  journal= {arXiv preprint arXiv:1405.4400},
  year   = {2015}
}
R2 v1 2026-06-22T04:16:50.137Z