5 papers
Modulation Instability-Induced Multimode Squeezing in Quadratic Frequency Combs
Haodong Xu, Nianqin Li, Zijun Shu +12
Lithium niobate (LN) microring resonators, characterized by an exceptionally high second-order nonlinear coefficient and superior electro-optic tunability, serve as an outstanding…
Frequency-dependent squeezing via Einstein-Podolsky-Rosen entanglement based on silicon nitride microring resonators
Haodong Xu, Zijun Shu, Nianqin Li +6
Significant efforts have been made to enhance the performance of displacement sensors limited by quantum noise, such as gravitational wave detectors. Techniques like frequency-depe…
Simultaneous Generation of Quantum Frequency Combs across Distinct Modal Families in a Single Whispering Gallery Mode Resonator
Bo Ji, Yongjun Yang, Tengfei Wu +2
Quantum frequency combs (QFCs) are versatile resources for multi-mode entanglement, such as cluster states, crucial for quantum communication and computation. On-chip whispering ga…
Optical Ranging Using Coherent Kerr Soliton Dual-microcombs with Extended Ambiguity Distance
Yuechen Yang, Yang Shen, Kailu Zhou +8
Optical ranging is a key technology in metrology. Optical frequency combs are shown to provide several advantages in light ranging, offering high precision with high acquisition ra…
Topological dissipative Kerr soliton combs in a valley photonic crystal resonator
Zhen Jiang, Lefeng Zhou, Wei Li +5
Topological phases have become an enabling role in exploiting new applications of nonlinear optics in recent years. Here we theoretically propose a valley photonic crystal resonato…