Energy transfer using unitary transformations (Q280728)

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scientific article; zbMATH DE number 6578420
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Energy transfer using unitary transformations
scientific article; zbMATH DE number 6578420

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    Energy transfer using unitary transformations (English)
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    10 May 2016
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    Summary: We study the unitary time evolution of a simple quantum Hamiltonian describing two harmonic oscillators coupled via a three-level system. The latter acts as an engine transferring energy from one oscillator to the other and is driven in a cyclic manner by time-dependent external fields. The S-matrix (scattering matrix) of the cycle is obtained in analytic form. The total number of quanta contained in the system is a conserved quantity. As a consequence, the spectrum of the S-matrix is purely discrete, and the evolution of the system is quasi-periodic. The explicit knowledge of the S-matrix makes it possible to do accurate numerical evaluations of the time-dependent wave function. They confirm the quasi-periodic behavior. In particular, the energy flows back and forth between the two oscillators in a quasi-periodic manner.
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    quantum stirring
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    S-matrix
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    driven quantum system
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    three-level system
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    quantum heat engine
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