Open Quantum Systems

The interaction between a quantum system and its environment drives rich phenomena including dissipation, decoherence, thermalization, and non-Markovian memory effects. Understanding and controlling these effects is central to robust quantum technologies and quantum thermodynamic tasks.

Our research combines rigorous theory with computational methods to model realistic dynamics beyond idealized isolated systems. We investigate both perturbative and non-perturbative regimes, with emphasis on practical diagnostics and simulation strategies relevant to current quantum hardware.

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