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Linear canonical transformations of coherent and squeezed states in the Wigner phase space
79
Citations
42
References
1988
Year
Spectral TheoryQuantum ScienceEngineeringMany-body Quantum PhysicWigner Rotation AngleLinear Canonical TransformationsGeometric QuantizationClassical OpticsQuantum TheoryCoherent ProcessQuantum SystemOptical SystemsQuantum EntanglementWigner Phase SpaceLorentz Group
It is shown that classical linear canonical transformations are possible in the Wigner phase space. Coherent and squeezed states are shown to be linear canonical transforms of the ground-state harmonic oscillator. It is therefore possible to evaluate the Wigner functions for coherent and squeezed states from that for the harmonic oscillator. Since the group of linear canonical transformations has a subgroup whose algebraic property is the same as that of the (2+1)-dimensional Lorentz group, it may be possible to test certain properties of the Lorentz group using optical devices. A possible experiment to measure the Wigner rotation angle is discussed.
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