activity
20182024
most citedEfficient frequency conversion in a degenerate microresonator

59 citations · 92 across the 5 of their papers we have counts for

collaborators

6 papers

physics.optics2022

Massive particle acceleration on a photonic chip via spatial-temporal modulation

Mai Zhang, Xie-hang Yu, Xin-Biao Xu +2

Recently, the spectral manipulation of single photons has been achieved through spatial-temporal modulation of the optical refractive index. Here, we generalize this mechanism to m…

physics.app-ph202232 cited

High-frequency traveling-wave phononic cavity with sub-micron wavelength

Xin-Biao Xu, Jia-Qi Wang, Yuan-Hao Yang +7

Thin-film gallium nitride (GaN) as a proven piezoelectric material is a promising platform for the phononic integrated circuits, which hold great potential for scalable information…

physics.atom-ph20211 cited

Planar Integrated Magneto Optical Trap

Liang Chen, Chang-Jiang Huang, Xin-Biao Xu +10

Abstract The magneto-optical trap (MOT) is an essential tool for collecting and preparing cold atoms with a wide range of applications. We demonstrate a planar-integrated MOT by co…

physics.optics202059 cited

Efficient frequency conversion in a degenerate microresonator

Jia-Qi Wang, Yuan-Hao Yang, Ming Li +7

Microresonators on a photonic chip could enhance nonlinear optics effects, thus are promising for realizing scalable high-efficiency frequency conversion devices. However, fulfilli…

physics.optics2020

Unidirectional transmission of single photons under non-ideal chiral photon-atom interactions

Cong-Hua Yan, Ming Li, Xin-Biao Xu +3

Single-photon transport in non-ideal chiral photon-atom interaction structures generally contains information backflow and thus limits the capabilities to transfer information betw…

physics.optics2018

"Möbius" Microring Resonator

Xin-Biao Xu, Lei Shi, Guang-Can Guo +2

A new category of optical microring resonator, which is analogous to the Möbius strip, is proposed. The "Möbius" microring resonator allows the conversion between modes with differ…