activity
20222025
most citedA hybrid single quantum dot coupled cavity on a CMOS-compatible SiC photonic chip for Purcell-enhanced deterministic single-photon emission

16 citations · 19 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2025

Hybrid and scalable photonic circuit cavity quantum electrodynamics

Xudong Wang, Yifan Zhu, Xiuqi Zhang +6

Similar to superconducting circuit quantum electrodynamics (cQED), the development of a photonic analog--specifically, photonic circuit cQED--has become a major focus in integrated…

quant-ph20251 cited

Large-scale quantum-dot-lithium-niobate hybrid integrated photonic circuits enabling on-chip quantum networking

Xudong Wang, Xiuqi Zhang, Bowen Chen +7

Hybrid integrated quantum photonics combines solid-state artificial atoms with reconfigurable photonic circuits, enabling scalable chip-based quantum networks. Self-assembled quant…

physics.optics20252 cited

Stable Soliton Microcomb Generation in X-cut Lithium Tantalate via Thermal-Assisted Photorefractive Suppression

Jiachen Cai, Shuai Wan, Bowen Chen +14

Chip-based soliton frequency microcombs combine compact size, broad bandwidth, and high coherence, presenting a promising solution for integrated optical telecommunications, precis…

quant-ph202416 cited

A hybrid single quantum dot coupled cavity on a CMOS-compatible SiC photonic chip for Purcell-enhanced deterministic single-photon emission

Yifan Zhu, Runze Liu, Ailun Yi +10

The ability to control nonclassical light emission from a single quantum emitter by an integrated cavity may unleash new perspectives for integrated photonic quantum applications.…

physics.optics2022

Hybrid integration of deterministic quantum dots-based single-photon sources with CMOS-compatible silicon carbide photonics

Yifan Zhu, Wenqi Wei, Ailun Yi +11

Thin film 4H-silicon carbide (4H-SiC) is emerging as a contender for realizing large-scale optical quantum circuits due to its high CMOS technology compatibility and large optical…