collaborators

6 papers

physics.optics2026

Magnetic-free optical mode degeneracy lifting in lithium niobate microring resonators

Xin-Biao Xu, Zheng-Xu Zhu, Yuan-Hao Yang +9

Breaking time-reversal symmetry in integrated photonics without magnetic fields remains a fundamental challenge. We demonstrate phonon-induced non-reciprocity through direct liftin…

quant-ph2025

All-optical control and multiplexed readout of multiple superconducting qubits

Xiaoxuan Pan, Chuanlong Ma, Jia-Qi Wang +12

Superconducting quantum circuits operate at millikelvin temperatures, typically requiring independent microwave cables for each qubit for connecting room-temperature control and re…

quant-ph2025

Scalable Optical Links for Controlling Bosonic Quantum Processors

Chuanlong Ma, Jia-Qi Wang, Linze Li +13

Superconducting quantum computing has the potential to revolutionize computational capabilities. However, scaling up large quantum processors is limited by the cumbersome and heat-…

physics.optics2025

Acoustically control of integrated optical microrings: from photonic molecule to Mobius strip

Zheng-Xu Zhu, Yuan-Hao Yang, Xin-Biao Xu +10

Microring resonators (MRRs) are fundamental building blocks of photonic integrated circuits, yet their dynamic reconfiguration has been limited to tuning refractive index or absorp…

quant-ph2025

Hardware-Efficient Bosonic Module for Entangling Superconducting Quantum Processors via Optical Networks

Jia-Hua Zou, Weizhou Cai, Jia-Qi Wang +7

Scaling superconducting quantum processors beyond single dilution refrigerators requires efficient optical interconnects, yet integrating microwave-to-optical (M2O) transducers pos…

physics.app-ph2025

Large-scale programmable phononic integrated circuits

Xin-Biao Xu, Yu Zeng, Jia-Qi Wang +11

Electronic and photonic chips revolutionized information technology through massive integration of functional elements, yet phonons as fundamental information carriers in solids re…