supported by the National Key Research and Development Program of China(No.2022YFB3203600);the National Natural Science Foundation of China(Nos.12202355,12132013,and 12172323);the Zhejiang Provincial Natural Science Foundation of China(No.LZ22A020003)。
Due to scale effects,micromechanical resonators offer an excellent platform for investigating the intrinsic mechanisms of nonlinear dynamical phenomena and their potential applications.This review focuses on mode-coup...
National Natural Science Foundation of China(NSFC)(Grant Nos.62375292 and 61975242);Natural Science Foundation of Guangdong Province for Distinguished Young Scholars(No.2023B1515020028);Fund of Sun Yat-sen University(No.12240012).
Mid-infrared(MIR)Kerr microcombs are of significant interest for portable dual-comb spectroscopy and precision molecular sensing due to strong molecular vibrational absorption in the MIR band.However,achieving a compa...
the German Federal Ministry for Research and Education(BMBF)for partially funding this work under the VIP+-Programme in the project IntellOSS,03VP08220.
Water monitoring,environmental analysis,cell culture stability,and biomedical applications require precise pH control.Traditional methods,such as pH strips and meters,have limitations:pH strips lack precision,whereas ...
supported by the Defense Advanced Research Projects Agency(HR001120C0137,D23AP00251-00);Office of Naval Research(N00014-22-C-1041);National Science Foundation(OMA-2137723,OMA2138068);U.S.Navy(N68335-22-C-0413);National Research Foundation of Korea.The device fabrication in this work was performed at the Harvard University Center for Nanoscale Systems(CNS);a member of the National Nanotechnology Coordinated Infrastructure Network(NNCI);which is supported by the National Science Foundation under NSF award no.ECCS-2025158.
Dissipative Kerr solitons from optical microresonators,commonly referred to as soliton microcombs,have been developed for a broad range of applications,including precision measurement,optical frequency synthesis,and u...
National Key Research and Development Program of China(2021YFA1400700);National Natural Science Foundation of China(62222515,12174438,11934019,91950118);Basic Frontier Science Research Program of Chinese Academy of Sciences(ZDBS-LYJSC003);CAS Project for Young Scientists in Basic Research(YSBR-100)。
Standing-wave supermode microresonators that are created through the strong coupling between counter-propagating modes have emerged as versatile platforms for sensing and nonlinear optics.For example,these microresona...
supports from National Key R&D Program of China(Grants No.2019YFA0705000,2022YFA1404600,2022YFA1205100);National Natural Science Foundation of China(Grants No.62122079,12192251,62235019,12334014,12134001,12104159,11933005);Innovation Program for Quantum Science and Technology(No.2021ZD0301403);Shanghai Municipal Science and Technology Major Project(2019SHZDZX01);Science and Technology Commission of Shanghai Municipality(No.23ZR1481800);the Youth Innovation Promotion Association of Chinese Academy of Sciences(Grant No.2020249);Engineering Research Center for Nanophotonics&Advanced Instrument,Ministry of Education,East China Normal University(No.2023nmc005)
Soliton microcombs,which require the hosting cavity to operate in an anomalous dispersion regime,are essential to integrate photonic systems.In the past,soliton microcombs were generated on cavity whispering gallery m...
Defense Advanced Research Projects Agency(HR001120C0137);U.S.Navy(N68335-22-C-0413);Air Force Office of Scientific Research(FA9550-20-1-01015);Air Force Research Laboratory(FA864921P0781);National Aeronautics and Space Administration(80NSSC22K0262,80NSSC23PB442);National Science Foundation(EEC-1941583,OMA-2137723,2138068);Office of Naval Research(N00014-22-C-1041);National Institutes of Health(5R21EY031895-02);National Research Foundation of Korea。
The recent emergence of thin-film lithium niobate(TFLN)has extended the landscape of integrated photonics.This has been enabled by the commercialization of TFLN wafers and advanced nanofabrication of TFLN such as high...
Fundamental Research Funds for the Provincial Universities of Zhejiang (GK239909299001-026);Natural Science Foundation of Zhejiang Province (LQ24F050016);National Natural Science Foundation of China (61971065,62301195, 12261131503);Innovation Program for Quantum Science and Technology (2023ZD0301500);Shenzhen-Hong Kong Cooperation Zone for Technology and Innovation(HZQBKCZYB2020050)。
Breathers are localized structures that undergo a periodic oscillation in their duration and amplitude. Optical microresonators, benefiting from their high-quality factor, provide an ideal test bench for studying brea...
Defense Advanced Research Projects Agency(HR001120C0137);U.S.Navy(N68335-22-C-0413);Air Force Office of Scientific Research(FA9550-20-1-01015);Air Force Research Laboratory(FA864921P0781);National Aeronautics and Space Administration(80NSSC22K0262,80NSSC23PB442);National Science Foundation(EEC1941583,OMA-2137723,2138068);Office of Naval Research(N00014-22-C-1041);National Institutes of Health(5R21EY031895-02);National Research Foundation of Korea.
The recent emergence of thin-film lithium niobate(TFLN)has extended the landscape of integrated photonics.This has been enabled by the commercialization of TFLN wafers and advanced nanofabrication of TFLN such as high...
This work was supported by the National Key R&D Program of China(Nos.2022YFA1205100,2023YFB2805700,and 2019YFA0705000);the National Natural Science Foundation of China(Nos.62293523 and 12304421);the Leading-edge Technology Program of Jiangsu Natural Science Foundation(No.BK20192001);the Zhangjiang Laboratory(No.ZJSP21A001);the Guangdong Major Project of Basic and Applied Basic Research(No.2020B0301030009);the Jiangsu Natural Science Foundation(No.BK20230770);the Jiangsu Funding Program for Excellent Postdoctoral Talent.
The optical frequency comb based on microresonators(microcombs)is an integrated coherent light source and has the potential to promise a high-precision frequency standard;self-reference and a long-term stable microcom...