National Natural Science Foundation of China(62275061,62175049);Natural Science Foundation of Heilongjiang Province(ZD2020F002);Fundamental Research Funds for the Central Universities(3072022TS2509);Priority 2030 Federal Academic Leadership Program;Russian Science Foundation(23-72-10059).
The funding in this article[1]needs to be supplemented.Coupled-mode theory analysis has been supported by the Priority 2030 Federal Academic Leadership Program.CST simulations have been supported by Russian Science Fo...
Ministerio de Economía y Competitividad(PID2019-106747RB-I00);Junta de Andalucía (P18-RT-1453, UMA-FEDERJA-158);Ministerio de Ciencia,Innovación y Universidades (FPU16/06762, FPU19/02408);Universidad de Málaga.
Many applications, including optical multiplexing, switching, and detection, call for low-cost and broadband photonic devices with polarization-independent operation. While the silicon-on-insulator platform is well po...
National Research Foundation of Korea(2018R1A2A1A19019181)。
Interference between two completely independent photons lies at the heart of many photonic quantum information applications such as quantum repeaters,teleportation,and quantum key distribution.Here,we report the obser...
National Natural Science Foundation of China(61775140,81701745);National Key Research and Development Program of China(2018YFA0701800);Shanghai Municipal Science and Technology Commission Innovation Action Plan(18DZ1100400);City University of Hong Kong(9610456)。
Airy optical beams have emerged to hold enormous theoretical and experimental research interest due to their outstanding characteristics.Conventional approaches suffer from bulky and costly systems,as well as poor pha...
National Research Foundation of Korea(2019M3E4A107866011,2019M3E4A1079777,2019R1A2C2006381);Korea Institute of Science and Technology(2E29580);ICT Research and Development Programs of MSIP/IITP(2014-3-00524);We thank the KT Corporation forproviding their deployed fiber.
Quantum key distribution(QKD)networks constitute promising solutions for secure communication.Beyond conventional point-to-point QKD,we developed 1×N QKD network systems with a sub-nanosecond resolution optical path ...
National Natural Science Foundation of China(NSFC)(61501499);National Defense Foundation of China(2201078);Key Program of Natural Science Foundation of Shaanxi Province(2017KJXX-24);China Scholarship Council(CSC)(20173059);Aviation Science Foundation of China(20161996009)
Safe detection of an arbitrarily shaped platform is critical for survivability, rescue, or navigation safety in a remote region. Metasurfaces afford great potential due to their strong electromagnetic(EM) wave control...
National Basic Research Program of China(2014CB339800);National Natural Science Foundation of China(NSFC)(61420106006,61422509,61605143,61622505,61675145,61735012);Program for Changjiang Scholars and Innovative Research Team in University(IRT13033);Major National Development Project of Scientific Instruments and Equipment(2011YQ150021);Guangxi Key Laboratory of Automatic Detecting Technology and Instruments(YQ17203)
Dielectric metasurfaces have achieved great success in realizing high-efficiency wavefront control in the optical and infrared ranges. Here, we experimentally demonstrate several efficient, polarization-independent, a...
National Natural Science Foundation of China(NSFC)(11604276,61601393,11501481);Key Scientific Project of Fujian Province in China(2015H0039)
Multiple resonant excitations of surface plasmons in a graphene stratified slab are realized by Otto configuration at terahertz frequencies. The proposed graphene stratified slab consists of alternating dielectric lay...
973 Program of China(2013CB632704);National Natural Science Foundation of China(NSFC)(11374357,11434017)
We numerically demonstrate a novel ultra-broadband polarization-independent metamaterial perfect absorber in the visible and near-infrared region involving the phase-change material Ge_2Sb_2Te_5(GST).The novel perfect...