Embedding dissipation and decoherence in unitary evolution schemes
classification
🪐 quant-ph
keywords
decoherencedissipationmatrixdensityembeddingequationsevolutionunitary
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Dissipation and decoherence, and the evolution from pure to mixed states in quantum physics are handled through master equations for the density matrix. By embedding elements of this matrix in a higher-dimensional Liouville-Bloch equation, the methods of unitary integration are adapted to solve for the density matrix as a function of time, including the non-unitary effects of dissipation and decoherence. The input requires only solutions of classical, initial value time-dependent equations. Results are illustrated for a damped driven two-level system.
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