Suchergebnisse - diffraction grating structure

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    Fabrication of ITO diffraction grating structure for infrared plasmonics by thermal nanoimprint lithography von Hasuike, Noriyuki, Maeda, Takeshi, Takeda, Minoru

    ISSN: 1340-6000, 1349-9432
    Veröffentlicht: Tokyo Springer Japan 01.10.2022
    Veröffentlicht in Optical review (Tokyo, Japan) (01.10.2022)
    “… Indium tin oxide (ITO) diffraction grating was fabricated on a polyimide (PI) film by using a combination of thermal nanoimprint lithography (NIL …”
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    Journal Article
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    The Development Progress of Surface Structure Diffraction Gratings: From Manufacturing Technology to Spectroscopic Applications von Wang, Ye, Fu, Xiuhua, Chen, Yongyi, Qin, Li, Ning, Yongqiang, Wang, Lijun

    ISSN: 2076-3417, 2076-3417
    Veröffentlicht: Basel MDPI AG 01.07.2022
    Veröffentlicht in Applied sciences (01.07.2022)
    “… The high-precision diffraction grating is an important chromatic dispersion component that has been widely used in many fields, including laser beam combining, chirped pulse compression, spectroscopy, among others …”
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    Multi-responsive, flexible, and structurally colored film based on a 1D diffraction grating structure von Wen, Xiaoxiang, Lu, Xuegang, Li, Jianing, Wei, Chaoping, Qin, Hongji, Liu, Yuting, Yang, Sen

    ISSN: 2589-0042, 2589-0042
    Veröffentlicht: United States Elsevier Inc 15.04.2022
    Veröffentlicht in iScience (15.04.2022)
    “… ) ordered periodic groove structure. The groove structure endows the film with bright, highly angle-dependent structural colors, which can be reversibly tuned by stretching and releasing …”
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    Experimental determination of nanocomposite grating structures by light- and neutron-diffraction in the multi-wave-coupling regime von Fally, Martin, Tomita, Yasuo, Fimia, Antonio, Madrigal, Roque F., Guo, Jinxin, Kohlbrecher, Joachim, Klepp, Jürgen

    ISSN: 1094-4087, 1094-4087
    Veröffentlicht: 24.05.2021
    Veröffentlicht in Optics express (24.05.2021)
    “… We experimentally demonstrate how to accurately retrieve the refractive index profile of photonic structures by standard diffraction experiments and use of the rigorous coupled-wave analysis …”
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    Diffraction Characterization based on Zero-level Diffraction Grating Structure von Zhang, Boyong, Hu, Yaqi, Tong, Zepan

    Veröffentlicht: IEEE 27.09.2024
    “… Diffraction grating is a key component in the external cavity spectral beam combining structure …”
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    Tagungsbericht
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    Imprinting gradient refractive index micro-structure in GeS2–Ga2S3–KCl glass for broadband diffraction grating von Yang, Guang, Cao, Jin, Qi, Yunhang, He, Xiaoyan, Peng, Changzhe, Lu, Yunjun, Tang, Feng, Tang, Ke, Liu, Bin, Chen, Hongfei, Chen, Guorong, Gao, Yanfeng, Chen, Dongchu

    ISSN: 0925-3467
    Veröffentlicht: Elsevier B.V 01.03.2020
    Veröffentlicht in Optical materials (01.03.2020)
    “… The effects of poling voltage (U), temperature (T), and time (t) on diffraction, morphology, elemental distribution and transmittance of the glass are thoroughly investigated …”
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    Electrochemical Synthesis of Poly(3,4-ethylenedioxythiophene) Film Having Dot Structures for Diffraction Grating von Eguchi, Naoto, Goto, Hiromasa

    ISSN: 1944-8252, 1944-8252
    Veröffentlicht: United States 21.08.2019
    Veröffentlicht in ACS applied materials & interfaces (21.08.2019)
    “… diffraction at ultraviolet and visible light wavelengths. The size of the dots depends on the concentration of the HPC electrolyte solution, decreasing with increasing the HPC concentration …”
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    Inverse diffraction grating of Maxwell’s equations in biperiodic structures von Bao, Gang, Cui, Tao, Li, Peijun

    ISSN: 1094-4087, 1094-4087
    Veröffentlicht: United States 24.02.2014
    Veröffentlicht in Optics express (24.02.2014)
    “… The surface is assumed to be a small and smooth deformation of a planar surface. In this paper, a novel approach is developed to solve the inverse diffraction grating …”
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    Diffraction Structures Formed by Two Crossed Superimposed Diffraction Gratings von Sergeev, S. A., Meshalkin, A. Yu, Iovu, M. S.

    ISSN: 1068-3755, 1934-8002
    Veröffentlicht: Moscow Pleiades Publishing 01.03.2021
    Veröffentlicht in Surface engineering and applied electrochemistry (01.03.2021)
    “… The diffraction patterns generated by surface relief diffraction structures that consisted of two identical crossed, superimposed gratings formed in the As 2 S 3 thin films by electron beam recording …”
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    Reflective Plasmonic Fano Sensor using a Double-layer Au Diffraction-grating Structure von Motogaito, Atsushi, Ukai, Keita, Nabuchi, Taiyo, Kato, Takeshi, Hiramatsu, Kazumasa

    Veröffentlicht: Japan Society of Applied Physics 12.10.2025
    Veröffentlicht in 2025 30th Microoptics Conference (MOC) (12.10.2025)
    “… We fabricate a reflective plasmonic Fano sensor featuring a double-layer gold (Au) diffraction-grating structure on a sapphire substrate using electron beam lithography and vacuum deposition …”
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    Sandwich structure for polarization-insensitive high-dispersion diffraction grating based on total internal reflection von Zhang, Xinbin, Chen, Jiaying, Huang, Haizhou, Huang, Lili, Feng, Xinkai, Chen, Huaixi, Zhang, Xianzeng

    ISSN: 1539-4794, 1539-4794
    Veröffentlicht: United States 15.09.2025
    Veröffentlicht in Optics letters (15.09.2025)
    “… Combining a grating structure with a prism can realize a device with high diffraction efficiency, low polarization-dependent loss, and strong dispersion in a wide spectral range, that is, a total internal reflection (TIR) grating …”
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    Gaussian beam diffraction from radial structures: detailed study on the diffraction from sinusoidal amplitude radial gratings von Azizkhani, Razieh, Hebri, Davud, Rasouli, Saifollah

    ISSN: 1094-4087, 1094-4087
    Veröffentlicht: United States 19.06.2023
    Veröffentlicht in Optics express (19.06.2023)
    “… In particular, the study of near- and far-field diffraction of a Gaussian beam from an amplitude radial grating having a sinusoidal profile provides new theoretical insights and possible applications …”
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    Influence of corona discharge on holographic recording of diffraction gratings in Cu–chalcogenide film structures von Nastas, A.M., Iovu, M.S., Prisacar, A.M., Meshalkin, A.Yu, Sergeev, S.A.

    ISSN: 0022-3093, 1873-4812
    Veröffentlicht: Elsevier B.V 15.04.2016
    Veröffentlicht in Journal of non-crystalline solids (15.04.2016)
    “… Applying of negative corona discharge during optical exposure leads to the increase of holographic sensibility of the investigated registration structures, and increases the diffraction efficiency of recorded gratings …”
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    Ultra-broadband terahertz perfect absorber by exciting multi-order diffractions in a double-layered grating structure von Peng, Yan, Zang, XiaoFei, Zhu, YiMing, Shi, Cheng, Chen, Lin, Cai, Bin, Zhuang, SongLin

    ISSN: 1094-4087, 1094-4087
    Veröffentlicht: United States 09.02.2015
    Veröffentlicht in Optics express (09.02.2015)
    “… In this paper, a simple double-layered doped-silicon grating structure was designed to realize an ultra-broadband and polarization-independent THz perfect absorber …”
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    A Thin Reflective Diffraction Grating Employing Resonant Structures von Thain, A., Jaber, A., Herve, A., Peres, G., Pasquier, B., Evain, L., Cambon, G., Harly, F., Lenquette, H., Sinigaglia, B.

    ISSN: 0018-926X, 1558-2221
    Veröffentlicht: New York IEEE 01.10.2015
    Veröffentlicht in IEEE transactions on antennas and propagation (01.10.2015)
    “… Reflective diffraction gratings consist of a periodic three-dimensional structure that produces appropriate constructive and destructive interference in order to redirect an incoming wave as a function of frequency …”
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    Dynamic Control of Light Direction Enabled by Stimuli‐Responsive Liquid Crystal Gratings von Zola, Rafael S., Bisoyi, Hari Krishna, Wang, Hao, Urbas, Augustine M., Bunning, Timothy J., Li, Quan

    ISSN: 0935-9648, 1521-4095, 1521-4095
    Veröffentlicht: Germany Wiley Subscription Services, Inc 01.02.2019
    Veröffentlicht in Advanced materials (Weinheim) (01.02.2019)
    “… ‐desired in science and industry. With the advances in optics, a periodic structure called diffraction grating gains prominence and renders a more flexible control over light propagation when compared to prisms …”
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