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Noise in homodyne and heterodyne detection

Optics Letters · 1983 · Vol. 8(3) · pp. 177–177
Horace P. YuenVincent W. S. Chan

Abstract

Quantum-mechanical calculations of the mean-square fluctuation spectra in optical homodyning and heterodyning are made for arbitrary input and local-oscillator quantum states. In addition to the unavoidable quantum fluctuations, it is shown that excess noise from the local oscillator always affects homodyning and, when it is broadband, also heterodyning. Both the quantum and the excess noise of the local oscillator can be eliminated by coherent subtraction of the two outputs of a 50-50 beam splitter. This result also demonstrates the fact that the basic quantum noise in homodyning and heterodyning is signal quantum fluctuation, not local-oscillator shot noise.

Quantum Information and CryptographyQuantum optics and atomic interactionsCold Atom Physics and Bose-Einstein CondensatesLocal oscillatorPhysicsHomodyne detectionQuantum noiseOpticsBeam splitterQuantum limitShot noiseNoise (video)Quantum imaging
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References
The Measurement of Thermal Radiation at Microwave Frequencies
Review of Scientific Instruments · 1946 · 937 citations
Two-photon coherent states of the radiation field
Physical review. A, General physics · 1976 · 2,044 citations
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