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    • 2. 发明专利
    • Coupled optical waveguide
    • 耦合光波导
    • JP2004045709A
    • 2004-02-12
    • JP2002202526
    • 2002-07-11
    • Nec CorpPhotonic Lattice Inc日本電気株式会社株式会社フォトニックラティス
    • YAMADA HIROHITOKAWAKAMI SHOJIROODERA YASUO
    • G02B6/122G02B6/12G02F1/01G02F1/313
    • PROBLEM TO BE SOLVED: To provide a coupled optical waveguide of which entire size can be reduced even when many optical guides are integrated on a substrate. SOLUTION: The coupled optical waveguide is provided with the substrate 11, where a groove 12 forming a line-and-space pattern is formed on the surface, and a plurality of grid modulation photonic crystal optical waveguides 10(1, 1) and 10(2, 1) prepared by a self cloning technique of alternately laminating a dielectric 13 of a low refractive index and a dielectric 14 of a high refractive index on the substrate 11 respectively. Then, a plurality of the grid modulation photonic crystal optical waveguides are arranged parallelly to each other on a surface parallel to the surface of the substrate 11. Also, the adjacent two of a plurality of the grid modulation photonic crystal optical waveguides are arranged closely so as to couple the electric fields of light between them. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种耦合光波导,即使当许多光导集成在基板上时,整个尺寸也可以减小。 解决方案:耦合光波导设置有衬底11,其中在表面上形成形成线间距图案的槽12,以及多个栅格调制光子晶体光波导10(1,1) 和10(2,1),其通过自身克隆技术分别在基板11上交替层叠低折射率的电介质13和高折射率的电介质14。 然后,多个栅格调制光子晶体光波导在平行于基板11的表面的表面上彼此平行地配置。此外,多个栅格调制光子晶体光波导中相邻的两个被布置成紧密 以便连接它们之间的电场。 版权所有(C)2004,JPO
    • 3. 发明专利
    • Short pulsed light dispersion characteristic variable element
    • 短脉冲分散特征变量元素
    • JP2005141003A
    • 2005-06-02
    • JP2003377555
    • 2003-10-01
    • Photonic Lattice Inc株式会社フォトニックラティス
    • KAWAKAMI SHOJIROODERA YASUO
    • G02B6/12G02B5/18H01S3/05
    • PROBLEM TO BE SOLVED: To provide an optical element which does not have a driven part and singly compensates for the primary, secondary, or higher order group delayed dispersion at various kinds of center wavelengths. SOLUTION: A different photonic crystal array of which each area in a screen has a different optical axis and a different grating interval is used. A position to which the light is made incident in the array is suitably selected corresponding to center wavelengths of the light and group delayed dispersion amount to be compensated. The primary, secondary, or higher order group delay dispersion can be compensated for in a wide range of optical wavelengths by preparing lots of areas of which the grating intervals and optical axis directions of the photonic array are made different. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种不具有被驱动部分的光学元件,并且可以单独补偿在各种中心波长处的初级,次级或更高阶组延迟色散。 解决方案:使用屏幕中每个区域具有不同光轴和不同光栅间隔的不同光子晶体阵列。 对应于要补偿的光的中心波长和组延迟色散量适当地选择入射到阵列中的光的位置。 可以通过制备光子阵列的光栅间隔和光轴方向不同的许多区域来在宽范围的光波长中补偿初级,次级或更高阶组延迟色散。 版权所有(C)2005,JPO&NCIPI