Area of research
Atomic and Molecular Physics, and Optics · Artificial Intelligence
Research interest
Research interests include Quantum many-body systems, Quantum Computing Algorithms and Architecture, Quantum Information and Cryptography, and Quantum and electron transport phenomena.
Efficient Tensor Network Simulation of IBM’s Eagle Kicked Ising Experiment
Probing the onset of quantum avalanches in a many-body localized system
Thermalization of Dilute Impurities in One-Dimensional Spin Chains
Verification of the area law of mutual information in a quantum field simulator
Digital quantum simulation of NMR experiments
Many-body delocalization from embedded thermal inclusion
Variational Quantum Dynamics of Two-Dimensional Rotor Models
Bath-induced delocalization in interacting disordered spin chains
Application of Pontryagin's maximum principle to quantum metrology in dissipative systems
A magnon scattering platform
Quantum Sampling Algorithms for Near-Term Devices
Optimal control for quantum metrology via Pontryagin's principle
Dynamical obstruction to localization in a disordered spin chain
Adiabatic Eigenstate Deformations as a Sensitive Probe for Quantum Chaos
Non-Gaussian correlations imprinted by local dephasing in fermionic wires
Counterdiabatic control of transport in a synthetic tight-binding lattice
Floquet-Engineering Counterdiabatic Protocols in Quantum Many-Body Systems
Asymptotic Prethermalization in Periodically Driven Classical Spin Chains
Glassy Phase of Optimal Quantum Control
Semiclassical echo dynamics in the Sachdev-Ye-Kitaev model
Cluster truncated Wigner approximation in strongly interacting systems
Broken symmetry in a two-qubit quantum control landscape
Minimizing irreversible losses in quantum systems by local counterdiabatic driving
Information propagation and equilibration in long-range Kitaev chains
Stationary ensemble approximations of dynamic quantum states: Optimizing the generalized Gibbs ensemble