Area of research
Atomic and Molecular Physics, and Optics · Materials Chemistry
Research interest
Research interests include Physics, Diamond, Quantum, Phase transition, Qubit, and Condensed matter physics.
Probing stress and magnetism at high pressures with two-dimensional quantum sensors
Imaging the Meissner effect in hydride superconductors using quantum sensors
Scalable spin squeezing in a dipolar Rydberg atom array
Many-Body Quantum Teleportation via Operator Spreading in the Traversable Wormhole Protocol
Observation of a prethermal discrete time crystal
Optically Enhanced Electric Field Sensing Using Nitrogen-Vacancy Ensembles
Emergent Ergodicity at the Transition between Many-Body Localized Phases
Performance of the rigorous renormalization group for first-order phase transitions and topological phases
Improved Lieb-Robinson bound for many-body Hamiltonians with power-law interactions
Symmetry-Enhanced Boundary Qubits at Infinite Temperature
Adiabatic ground state preparation in an expanding lattice
Imaging the Local Charge Environment of Nitrogen-Vacancy Centers in Diamond
Observation of a discrete time crystal
Observation of discrete time-crystalline order in a disordered dipolar many-body system
Discrete Time Crystals: Rigidity, Criticality, and Realizations
Quasi-Many-Body Localization in Translation-Invariant Systems
Many-Body Localization in Dipolar Systems
Interferometric Probes of Many-Body Localization
Topologically protected excitons in porphyrin thin films
Nanometre-scale thermometry in a living cell
Phonon-Induced Spin-Spin Interactions in Diamond Nanostructures: Application to Spin Squeezing
Room-Temperature Quantum Bit Memory Exceeding One Second
Scalable architecture for a room temperature solid-state quantum information processor