activity
20202023
most citedRoom-temperature coherent control of implanted defect spins in silicon carbide

1 citations · 1 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph2023

Wavelength-tunable high-fidelity entangled photon sources enabled by dual Stark effects

Chen Chen, Jun-Yong Yan, Hans-Georg Babin +16

The construction of a large-scale quantum internet requires quantum repeaters containing multiple entangled photon sources with identical wavelengths. Semiconductor quantum dots ca…

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…

physics.optics2021

An Ultrahigh-Q Microresonator on 4H-silicon-carbide-on-insulator Platform for Multiple Harmonics, Cascaded Raman Lasing and Kerr Comb Generations

Chengli Wang, Zhiwei Fang, Ailun Yi +13

The realization of ultrahigh quality (Q) resonators regardless of the underpinning material platforms has been a ceaseless pursuit, because the high Q resonators provide an extreme…

physics.optics2021

Visible and Near-infrared Microdisk Resonators on a 4H-Silicon-Carbide-on-Insulator Platform

Chengli Wang, Chen Shen, Ailun Yi +8

Wavelength-sized microdisk resonators were fabricated on a single crystalline 4H-silicon-carbide-oninsulator platform (4H-SiCOI). By carrying out microphotoluminescence measurement…

physics.app-ph20201 cited

Room-temperature coherent control of implanted defect spins in silicon carbide

Fei-Fei Yan, Ai-Lun Yi, Jun-Feng Wang +9

Recently, vacancy-related spin defects in silicon carbide (SiC) have been demonstrated to be potentially suitable for versatile quantum interface building and scalable quantum netw…