Area of research
Atomic and Molecular Physics, and Optics · Artificial Intelligence
Research interest
Research interests include Quantum, Physics, Quantum thermodynamics, Master equation, Adiabatic process, and Statistical physics.
Quantum Molecular Devices
Inertial geometric quantum logic gates
Unification of the first law of quantum thermodynamics
Employing typicality in optimal control theory: Addressing large Hilbert spaces
Controlling the uncontrollable: Quantum control of open-system dynamics
Non-Markovian dynamics under time-translation symmetry
Coherent control of ultrafast bond making and subsequent molecular dynamics
Open system dynamics from thermodynamic compatibility
Inertial Theorem: Overcoming the quantum adiabatic limit
Experimental verification of the inertial theorem control protocols
Characterization of the Hexanitrate Esters of Sugar Alcohols
Quantum thermo-dynamical construction for driven open quantum systems
Quantum signatures in the quantum Carnot cycle
Quantum Finite-Time Thermodynamics: Insight from a Single Qubit Engine
Fast route to equilibration
Landauer’s Principle in a Quantum Szilard Engine without Maxwell’s Demon
Optimization of high-order harmonic generation by optimal control theory: Ascending a functional landscape in extreme conditions
Shortcut to Equilibration of an Open Quantum System
Quantum thermodynamics and open-systems modeling
Imaging Recoil Ions from Optical Collisions between Ultracold, Metastable Neon Isotopes
Introduction to Quantum Thermodynamics: History and Prospects
Time-dependent Markovian quantum master equation
Enhanced Particle Swarm Optimization Algorithm: Efficient Training of ReaxFF Reactive Force Fields
Quantum heat engines: Limit cycles and exceptional points
Optimizing the multicycle subrotational internal cooling of diatomic molecules
The Quantum Harmonic Otto Cycle
Energy consumption for shortcuts to adiabaticity
Atom interferometry using a shaken optical lattice
Thermal Decomposition of Erythritol Tetranitrate: A Joint Experimental and Computational Study
Action-noise-assisted quantum control