Homodyne-like detection scheme based on photon-number-resolving detectors

Author:

Allevi Alessia1,Bina Matteo2,Olivares Stefano3,Bondani Maria4

Affiliation:

1. Department of Science and High Technology, University of Insubria, via Valleggio 11, Como 22100, Italy

2. Quantum Technology Lab, Department of Physics, University of Milan, via Celoria 16, Milano 20133, Italy

3. Quantum Technology Lab, Department of Physics, University of Milan and INFN, Sezione di Milano, via Celoria 16, Milano 20133, Italy

4. Institute for Photonics and Nanotechnologies, National Research Center, via Valleggio 11, Como 22100, Italy

Abstract

Homodyne detection is the most effective detection scheme employed in quantum optics to characterize quantum states. It is based on mixing at a beam splitter the signal to be measured with a coherent state, called the “local oscillator,” and on evaluating the difference of the photocurrents of two photodiodes measuring the outputs of the beam splitter. If the local oscillator is much more intense than the field to be measured, the homodyne signal is proportional to the signal-field quadratures. If the local oscillator is less intense, the photodiodes can be replaced with photon-number-resolving detectors, which have a smaller dynamics but can measure the light statistics. The resulting new homodyne-like detector acquires a hybrid nature, being it capable of yielding information on both the particle-like (statistics) and wave-like (phase) properties of light signals. The scheme has been tested in the measurement of the quadratures of coherent states, bracket states and phase-averaged coherent states at different intensities of the local oscillator.

Publisher

World Scientific Pub Co Pte Lt

Subject

Physics and Astronomy (miscellaneous)

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