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10篇 您的检索式:作者名="Letartre"
    题名 作者 年代 出处 被引量
1Group velocity and propagation losses measurement in a single- line photonic-crystal waveguide on InP membranes 显示文摘LETARTRE X ETARTRE C GRILLET C 2001Applied Physics Letters2001,79,15:1
2Functional analysis of the glaucoma-causing TIGR/myocilin protein:integrity of amino-terminal coiled-coil regions and olfactomedin homology domain is essential for extracellular adhesion and secretion显示文摘Gobeil S Letartre L Raymond V 2006Exp Eye Res2006,82,6:1
3Functional analysis of the glaucoma-causing TIGR/myocilin protein:integrity of amino-terminal coiled-coil regions and olfactomedin homology domain is essential for extracellular adhesion and secretion显示文摘GOBEIL S LETARTRE L RAYMOND V 2006Exp Eye Res2006,82,:1
4Functional analysis of the protein:integrity of amino-terminal coiled-coil regions and olfactomedin homology domain is essential for extracellular adhesion and secretion 显示文摘Gobeil S Letartre L Raymond glaucoma-causing TIGR/myocilin V 2006Exp Eye Res2006,82,6:1
5Two- dimensional photonic crystal for absorption enhancement in hydrogenated amorphous silicon thin film solar cells 显示文摘GOMARD G DROUARD E LETARTRE X 2010Journal of Applied Physics2010,108,12:1
6Group Velocity and Propagatin Losses Measurement in a Single-line Photonic-crystal Waveguide on InP Membranes显示文摘LETARTRE X SEASSAL C CRILLET C 2001Applied Physics Letters2001,79,15:1
7Two-dimensional photonic crystal for absorption enhancement in hydrogenated amorphous silicon thin film solar cells显示文摘Gomard G Drouard E Letartre X 0,,:1
8Broadband optical characterization and modeling of photonic crystal waveguides for silicon optical显示文摘 Picard E Charvolin T Hadji E Heitzmann M Dal'zotto B Nier ME Seassal C Rojo-Romeo P Letartre X 2004JOURNAL OF APPLIED PHYSICS2004,95,3:1
9Analytical modeling and an experimental investigating of two dimensional photonic crystal microlasers: defect state (microcavity) versus band edge state (distributed feedback) structures显示文摘LETARTRE X MONAT C SEASSAL C 2005Opt B2005,22,12:1
10Optical mode study of III-V-nanowire-based nanophotonic crystals for an integrated infrared band microlaser显示文摘In this paper,we study an original strategy to generate an infrared waveband microlaser by an integrated III–V-nanowire(NW)-based photonic array for on-chip interconnects.The optical modes of the III–V-NW-based photonic array are investigated for utilization as an all-in-one gain medium,waveguide,and cavity.Adequate designs of periodic arrays of InP NWs with different polarization TM and TE modes are studied by 3D electromagnetic simulation finite difference time domain to optimize the resonant active photonic crystal(hybrid Bloch modes)in the infrared band at 1.3μm.According to our calculations,NWs larger than 0.2μm in diameter are needed to conceive optic modes inside NW photonics in TM polarization.However,smaller NW photonics,such as 0.1μm in diameter,can obtain only the TE mode inside the NWs.This phenomenon is theoretically illustrated by the dispersive curves of NW-based photonics.It aims at demonstrating that the slow velocity mode inside the NW photonics will cause amplification of lightwaves and generate microlasers in the infrared band at 1.3μm.These studies are of prime importance for further microlaser integration to silicon-on-insulator(SOI)waveguides for on-chip optical interconnects.Zhen Lin Michel Gendry Xavier Letartre 2014Photonics Research2014,2,6:1
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