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光:科学与应用(英文版)
中国科学院长春光学精密机械与物理研究所
光:科学与应用(英文版)

中国科学院长春光学精密机械与物理研究所

双月

2095-5545

light_lsa@ciomp.ac.cn

0431-86176851

130033

吉林省长春市东南湖大路3888号 中国科学院长春光学精密机械与物理研究所

光:科学与应用(英文版)/Journal Light:Science & ApplicationsCSCDCSTPCD北大核心EISCI
查看更多>>《Light: Science & Applications》(《光:科学与应用》)是由中国科学院长春光学精密机械与物理研究所与中国光学学会共同主办,与自然出版集团(现更名为Springer Nature)合作出版的全英文开放获取(OA)国际学术期刊。该刊于2012年3月29日创刊,2013年10月先后被国际著名检索系统SCI及全球最大文摘引文数据库Scopus收录,最新影响引子14.098,连续3年位于SCI收录的光学期刊影响因子榜前3位。该刊是自然出版集团在中国出版的第一本OA物理类期刊,致力于推动全球范围内的光学研究,刊载光学领域基础、应用基础以及工程技术研究及应用方面的高水平的最新研究成果,包括小尺度光学、特种光学、光学材料及处理、光学元件制备、光学数据传输、光学测量、光学在生命科学及环境科学等领域的应用等方面的高质量、高影响力的原创性学术论文、News & Views、快报、展望和综述文章。
正式出版
收录年代

    Breaking anisotropy limitations in thin-film lithium niobate arrayed waveguide gratings

    Cheng Wang
    1985-1986页
    查看更多>>摘要:A universal design strategy for dispersive elements in anisotropic platforms is proposed,enabling high-performance arrayed waveguide gratings in thin-film lithium niobate that are essential for future optical communications.

    Waveguide-integrated metasurfaces for multi-channel crosstalk-free holography

    Hyeonsu HeoJunsuk Rho
    1987-1989页
    查看更多>>摘要:Limited information capacity and inter-channel crosstalk in metaholograms hinder their practical use in display applications.Leveraging waveguide-based metasurfaces,the integration of spin and angle-of-incidence multiplexing facilitates the generation of broadband six-channel metaholograms free from crosstalk.

    Enhancing vertically stacked skin display compactness via discrete layer preparation

    Yichen CaiXiangyu HouWei Chen
    1990-1991页
    查看更多>>摘要:The discrete preparation of functional layers followed by lamination for all-organic active-matrix organic light-emitting diodes enables an ultrahigh aperture ratio and reliable conformability,promising significant potential for next-generation skin-like displays.

    Silicon carbide,the next-generation integrated platform for quantum technology

    Haiyan Ou
    1992-1994页
    查看更多>>摘要:Silicon carbide(SiC)is emerging as a promising material platform for quantum photonic integrated circuits(QPICs).A quantum light source is one of the fundamental building blocks for QPICs.A high-performance quantum light source from SiC platform will facilitate SiC's infiltration into QPICs.

    Seeing invisible objects with intelligent optics

    Isaac NapeAndrew Forbes
    1995-1996页
    查看更多>>摘要:Transparent objects are invisible to traditional cameras because they can only detect intensity fluctuations,necessitating the need for interferometry followed by computationally intensive digital image processing.Now it is shown that the necessary transformations can be performed optically by combining machine learning and diffractive optics,for a direct in-situ measurement of transparent objects with conventional cameras.

    Ultra-low loss silicon nitride becomes even cooler

    Dawn T.H.TanXavier X.Chia
    1997-1999页
    查看更多>>摘要:Ultra-low loss silicon nitride realized using deuterated precursors and low thermal budgets well within backend-of-line CMOS processing may accelerate widespread proliferation of their use.

    Micro-patterning of spintronic emitters enables ultrabroadband structured terahertz radiation

    Hou-Tong Chen
    2000-2001页
    查看更多>>摘要:Structured light beams offer promising properties for a variety of applications,but the generation of broadband structured light remains a challenge.New opportunities are emerging in the terahertz frequency range owing to recent progress in light-driven ultrafast vectorial currents through spatially patterning spintronic and optoelectronic systems.

    Light People:Prof.Juejun Hu,exploring the light

    Tingting Sun
    2002-2007页

    Partial coherence boosts photonic computing

    Hang ChenFei Dai
    2008页

    Strong light-matter coupling in van der Waals materials

    Yuan LuoJiaxin ZhaoAntonio FieramoscaQuanbing Guo...
    2009-2026页
    查看更多>>摘要:In recent years,two-dimensional(2D)van der Waals materials have emerged as a focal point in materials research,drawing increasing attention due to their potential for isolating and synergistically combining diverse atomic layers.Atomically thin transition metal dichalcogenides(TMDs)are one of the most alluring van der Waals materials owing to their exceptional electronic and optical properties.The tightly bound excitons with giant oscillator strength render TMDs an ideal platform to investigate strong light-matter coupling when they are integrated with optical cavities,providing a wide range of possibilities for exploring novel polaritonic physics and devices.In this review,we focused on recent advances in TMD-based strong light-matter coupling.In the foremost position,we discuss the various optical structures strongly coupled to TMD materials,such as Fabry-Perot cavities,photonic crystals,and plasmonic nanocavities.We then present several intriguing properties and relevant device applications of TMD polaritons.In the end,we delineate promising future directions for the study of strong light-matter coupling in van der Waals materials.