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  • It is appropriate to base the quantum description of light propagation and down-conversion in a nonlinear medium on a Hamiltonian operator. In pumping with femtosecond pulses, which is not yet treated here, the description is so complicated that the discontinuities of the linear and nonlinear susceptibilities present a specific problem. In contrast, the analogy with a quantum nonlinear beam splitter can be utilized for the quantization of classical input-output relations. On numerical simulation, nonvanishing commutators between output field operators of different modes are revealed and a method of adaptation of these results to quantum input-output relations is also proposed.
  • It is appropriate to base the quantum description of light propagation and down-conversion in a nonlinear medium on a Hamiltonian operator. In pumping with femtosecond pulses, which is not yet treated here, the description is so complicated that the discontinuities of the linear and nonlinear susceptibilities present a specific problem. In contrast, the analogy with a quantum nonlinear beam splitter can be utilized for the quantization of classical input-output relations. On numerical simulation, nonvanishing commutators between output field operators of different modes are revealed and a method of adaptation of these results to quantum input-output relations is also proposed. (en)
Title
  • Quantization of radiation emitted at discontinuities of nonlinearity
  • Quantization of radiation emitted at discontinuities of nonlinearity (en)
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  • Quantization of radiation emitted at discontinuities of nonlinearity
  • Quantization of radiation emitted at discontinuities of nonlinearity (en)
skos:notation
  • RIV/68378271:_____/13:00399362!RIV14-AV0-68378271
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  • I, P(ED2.1.00/03.0058)
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  • 1
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  • 101221
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  • RIV/68378271:_____/13:00399362
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  • parametric down-conversion; quantum optics; interference; propagation; light (en)
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  • Physica Scripta
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  • T153
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  • Peřina jr., Jan
  • Lukš, A.
  • Peřinová, V.
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  • 000316953400051
issn
  • 0031-8949
number of pages
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  • 10.1088/0031-8949/2013/T153/014050
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