activity
20232025
collaborators
Showing physics.opticsShow all

7 papers · 1 filter

physics.optics2025

Multi-peak vector soliton families in defocusing Kerr resonators

Pengxiang Wang, Carlos Mas-Arabi, Gian-Luca Oppo +6

We report the existence of multi-peaked vector soliton families in normally dispersive passive Kerr resonators. Through cross-phase modulation between two orthogonal polarization c…

physics.optics2025

Quasi-normal modes empowered coherent control of electromagnetic interactions

Jingwei Wang, Pengxiang Wang, Chaofan Zhang +2

Quasi-normal modes (QNMs) and coherent control of light-matter interactions (through synchronized multiple coherent incident waves) are profound and pervasive concepts in and beyon…

physics.optics2025

Efficient and accurate analysis of oscillation dynamics for dissipative cavity solitons based on the artificial neural network

Maolin Wang, Pengxiang Wang, Gang Xu

As a conventional means to analyze the system mechanism based on partial differential equations (PDE) or nonlinear dynamics, iterative algorithms are computationally intensive. In…

physics.optics2024

Polarization faticons: Chiral localized structures in self-defocusing Kerr resonators

Erwan Lucas, Gang Xu, Pengxiang Wang +9

We report on numerical predictions and experimental observations of a novel type of temporal localized dissipative structures that manifest themselves in the self-defocusing regime…

physics.optics2024

Excitation and manipulation of super cavity solitons in multi-stable passive Kerr resonators

Pengxiang Wang, Jianxing Pan, Tianye Huang +6

We report on the theoretical analysis as well as the numerical simulations about the nonlinear dynamics of cavity solitons in a passive Kerr resonator operating in the multistable…

physics.optics2024

Geometric Phase-Driven Scattering Evolutions

Pengxiang Wang, Yuntian Chen, Wei Liu

Conventional approaches for scattering manipulations rely on the technique of field expansions into spherical harmonics (electromagnetic multipoles), which nevertheless is non-gene…