Area of research
Atomic and Molecular Physics, and Optics · Computer Networks and Communications
Research interest
Research interests include Physics, Soliton, Laser, Random matrix, Casimir effect, and Fiber laser.
Direct Measurement of Energy Transfer in Strongly Driven Rotating Turbulence
Universality and hysteresis in slow sweeping of bifurcations
Chaotic Internal Dynamics of Dissipative Optical Soliton Molecules
Winding number statistics for chiral random matrices: Averaging ratios of determinants with parametric dependence
Winding number statistics for chiral random matrices: Averaging ratios of parametric determinants in the orthogonal case
Universal dynamics of spatiotemporal entrainment with phase symmetry
Synchronization of the internal dynamics of optical soliton molecules
Soliton-pair dynamical transition in mode-locked lasers
Winding number statistics of a parametric chiral unitary random matrix ensemble*
Thermal instabilities, frequency-comb formation, and temporal oscillations in Kerr microresonators
Correlations of quantum curvature and variance of Chern numbers
Deterministic access of broadband frequency combs in microresonators using cnoidal waves in the soliton crystal limit
Forced deterministic dynamics on a random energy landscape: Implications for the physics of amorphous solids
Optimal frequency combs from cnoidal waves in Kerr microresonators
Bidirectional Soliton Rain Dynamics Induced by Casimir-Like Interactions in a Graphene Mode-Locked Fiber Laser
Pulse growth dynamics in laser mode locking
Noise-mediated Casimir-like pulse interaction mechanism in lasers
Time-energy trade-off in unambiguous-state-discrimination positive operator-valued measures