Publication | Open Access
Dynamically stabilized decoherence-free states in non-Markovian open fermionic systems
19
Citations
75
References
2012
Year
Spectral TheoryQuantum ScienceQuantum DynamicEngineeringQuantum ComputingPhysicsDecoherence-free StatesMarkovian Master EquationsDecoherence-free SubspacesNatural SciencesMany-body Quantum PhysicQuantum Mechanical PropertyQuantum SystemQuantum ChaosQuantum EntanglementNon-markovian Fermionic EnvironmentQuantum Decoherence
Decoherence-free subspaces (DFSs) provide a strategy for protecting the dynamics of an open system from decoherence induced by the system-environment interaction. So far, DFSs have been primarily studied in the framework of Markovian master equations. In this work, we study decoherence-free (DF) states in the general setting of a non-Markovian fermionic environment. We identify the DF states by diagonalizing the nonunitary evolution operator for a two-level fermionic system attached to an electron reservoir. By solving the exact master equation, we show that DF states can be stabilized dynamically.
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