Area of research
Statistical and Nonlinear Physics · Artificial Intelligence
Research interest
Research focused on Quantum and Refrigerator car, with related work in Master equation, Quantum thermodynamics, Equivalence (formal languages). Notable publications include 'Quantum Heat Engines and Refrigerators: Continuous Devices', 'Equivalence of Quantum Heat Machines, and Quantum-Thermodynamic Signatures', and 'The local approach to quantum transport may violate the second law of thermodynamics'.
Interferometry of quantum correlation functions to access quasiprobability distribution of work
Time-dependent Markovian quantum master equation
Action-noise-assisted quantum control
Quantum Heat Machines Equivalence, Work Extraction beyond Markovianity, and Strong Coupling via Heat Exchangers
Equivalence of Quantum Heat Machines, and Quantum-Thermodynamic Signatures
Quantum Heat Engines and Refrigerators: Continuous Devices
The local approach to quantum transport may violate the second law of thermodynamics
Quantum Absorption Refrigerator
Quantum refrigerators and the third law of thermodynamics
Comment on “Cooling by Heating: Refrigeration Powered by Photons”