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    • 1. 发明授权
    • Optical fiber wavelength, multiplexer and demultiplexer
    • 光纤波长,多路复用器和解复用器
    • US06330090B1
    • 2001-12-11
    • US09124222
    • 1998-07-29
    • Philippe MartinBernard LalouxBertrand MerigotHervé Lefevre
    • Philippe MartinBernard LalouxBertrand MerigotHervé Lefevre
    • H04J1402
    • G02B6/2938
    • The present invention relates to an optical fiber wavelength multiplexing or demultiplexing device comprising: An optical fiber wavelength multiplexing device comprising: an array of input single-mode fibers (101 to 105) designed for carrying light beams at different wavelengths (&lgr;1, &lgr;2, &lgr;2, . . . ,&lgr;n), an output single-mode fiber (161) designed for carrying the whole set of such light beams, a dispersing system (107) receiving light beams from the input fibers (101 to 105) in an end plane and generating superimposed light beams designed for the output fiber (161) in an output plane, an array of converging microlenses (171 to 175) being located in the input plane, whereas a microlens corresponds to each input fiber, wherein the microlens array has the same pitch as the input fiber anlay and produces diverging beams whose respective central axes are parallel and which are directed to a collimating lens (108) which produces parallel collimated beams whose respective central axes are converging on the dispersing system. The demultiplexer comprises the same elements, whereas the roles of the input/output fibers and planes are reversed.
    • 本发明涉及一种光纤波长复用或解复用器件,包括:一种光纤波长多路复用器件,包括:输入单模光纤阵列(101至105),用于传送不同波长的光束(lambd1,lambd2,lambd2 ,...,lambdn),设计用于承载整个这样的光束的输出单模光纤(161),在端面中从输入光纤(101至105)接收光束的分散系统(107) 并且在输出平面中产生为输出光纤(161)设计的叠加光束,位于输入平面中的会聚微透镜阵列(171至175),而微透镜对应于每个输入光纤,其中微透镜阵列具有 具有与输入光纤安装相同的间距,并产生其各自的中心轴平行的发散光束,并且它们被引导到准直透镜(108),该准直透镜产生平行的准直光束, es分散在分散系统上。解复用器包括相同的元件,而输入/输出光纤和平面的作用相反。
    • 2. 发明授权
    • Optical wave-guide wavelength multiplexer and demultiplexer
    • 光波导波长多路复用器和解复用器
    • US06249364B1
    • 2001-06-19
    • US09252798
    • 1999-02-19
    • Philippe MartinBernard LalouxBertrand MerigotHervë Lefevre
    • Philippe MartinBernard LalouxBertrand MerigotHervë Lefevre
    • H04J1402
    • G02B6/2931G02B6/272G02B6/2793G02B6/34
    • An optical wave-guide wavelength multiplexing device comprising: an array of input single-mode wave-guides designed for carrying light beams at different wavelengths (&lgr;1, &lgr;2, . . . , &lgr;n), an output single-mode wave-guide designed for carrying the whole set of such light beams, a dispersing system receiving light beams from the input wave-guides in an end plane and generating superimposed light beams designed for the output wave-guide in an output plane, a collimating lens which produces collimated beams from the input wave-guides whose respective central axes are converging to be superposed on the rear reflector of the dispersing system, a refracting prism located between the dispersing system and the collimating lens. A polarization splitter can also be placed between the output single-mode wave-guides array and the grating. The demultiplexer comprises the same elements, whereas the roles of the input/output wave-guides and planes are reversed.
    • 一种光波导波长多路复用装置,包括:设计用于承载不同波长的光束(lambd1,lambd2,lambdn)的输入单模波导阵列,输出单模波导,设计用于 携带整套这样的光束,分散系统从端面接收来自输入波导的光束,并在输出平面中产生为输出波导设计的叠加光束,准直透镜,产生准直光束 其各个中心轴会聚的输入波导,叠加在分散系统的后反射器上,位于分散系统和准直透镜之间的折射棱镜。 偏振分离器也可以放置在输出单模波导阵列和光栅之间。 解复用器包括相同的元件,而输入/输出波导和平面的作用相反。
    • 3. 发明授权
    • Optical fiber wavelength multiplexer and demutiplexer
    • 光纤波长多路复用器和解复用器
    • US06084695A
    • 2000-07-04
    • US891971
    • 1997-07-11
    • Philippe MartinBernard LalouxBertrand MerigotHerve Lefervre
    • Philippe MartinBernard LalouxBertrand MerigotHerve Lefervre
    • G02B6/32G02B6/28G02B6/293G02B6/34H04J14/00H04J14/02
    • G02B6/272G02B6/2931G02B6/2938
    • The present invention relates to an optical fiber wavelength multiplexing or demultiplexing device comprising.The multiplexer comprises input fibers (101 to 105) designed for carrying luminous beams at different wavelengths (.lambda.1, .lambda.2, . . . , .lambda.n), an output fiber (161) designed for carrying the whole set of such luminous beams, a dispersing system (107) receiving luminous beams from the input fibers (101 to 105) in an input plane and generating superimposed luminous beams designed for the output fiber (161) in an output plane.A converging lens array (171 to 175) is located in the input plane, whereas a lens corresponds to each input fiber and whereby the said input fiber is placed in the focal point of the said lens.The demultiplexer comprises the same elements, whereas the roles of the fibers and input/ouput planes are reversed.
    • 本发明涉及一种光纤波长复用或解复用装置,包括: 多路复用器包括设计用于承载不同波长(λ1,λ2,...,λn)的发光束的输入光纤(101至105),设计用于承载整套这种发光束的输出光纤(161) 在输入平面中从输入光纤(101至105)接收发光束并在输出平面中产生为输出光纤(161)设计的叠加发光束的分散系统(107)。 会聚透镜阵列(171至175)位于输入平面中,而透镜对应于每个输入光纤,并且由此将所述输入光纤放置在所述透镜的焦点中。 解复用器包括相同的元件,而光纤和输入/输出平面的作用相反。
    • 4. 发明授权
    • Optical spectrum analyzer and process for analyzing the corresponding
spectrum
    • 光谱分析仪及相应光谱分析程序
    • US5886785A
    • 1999-03-23
    • US942612
    • 1997-10-02
    • Herve LefevrePhilippe MartinBertrand MerigotBernard LalouxDenis Mangeot
    • Herve LefevrePhilippe MartinBertrand MerigotBernard LalouxDenis Mangeot
    • G01J3/18
    • G01J3/18
    • The invention relates to an optical spectrum analyzer of an incident light beam (101) and a process for analyzing the corresponding spectrum. The spectrum analyzer comprises addressing means (1), a diffraction grating (2), a reflecting dihedron (3), a device (4) for adjusting the rotation of the reflecting dihedron and reception means (5). A polarization separator (11) divides the incident beam (101) into a first and second parallel secondary beam (102, 104), of linearly polarized light along the directions parallel to and perpendicular to the grooves in the grating respectively, and a .lambda./2 plate (12) placed on the path of the first secondary beam (102) applies a perpendicular polarization direction to this beam. The grating diffracts the secondary beams (103, 104) a first time, the reflecting dihedron exchanges their directions, the grating diffracts them a second time, the .lambda./2 plate applies a 90.degree. rotation to the polarization state of the second secondary beam (110) and the separator recombines the secondary beams (109, 111) into a single main beam (112) returned to reception means.
    • 本发明涉及入射光束(101)的光谱分析仪和用于分析相应光谱的过程。 频谱分析仪包括寻址装置(1),衍射光栅(2),反射二面体(3),用于调节反射二面体和接收装置(5)旋转的装置(4)。 偏振分离器(11)分别沿着平行于并垂直于光栅中的凹槽的方向将入射光束(101)分成第一和第二平行次光束(102,104),线偏振光分别与λ/ 放置在第一辅助光束(102)的路径上的两个板(12)向该光束施加垂直偏振方向。 光栅首次衍射次光束(103,104),反射二面体交换其方向,光栅第二次衍射它们,λ/ 2板向第二次光束的偏振状态施加90度旋转( 110),并且分离器将次级束(109,111)复合到返回到接收装置的单个主波束(112)中。
    • 6. 发明授权
    • Multiwavelength source
    • 多波长源
    • US06507597B1
    • 2003-01-14
    • US09453410
    • 1999-12-03
    • Philippe GraindorgePhilippe MartinBernard LalouxHervé Lefevre
    • Philippe GraindorgePhilippe MartinBernard LalouxHervé Lefevre
    • H01S308
    • H01S5/141H01S5/143H01S5/4062H01S5/4087
    • Multiwavelength laser source transmitting a luminous flux including as many amplifier wave-guides as potential transmission wavelengths, a collimation optic system for collimating the beams transmitted by the wave-guides, a network and a retroreflector making up the network, a dispersive retroreflecting device that defines with each wave-guide, an external resonating cavity, whereas each wave-guide has an inner face and an outer face with respect to its associated cavity. A Fabry-Perot interferometer with reduced fine adjustment is placed in the cavity between the collimation optic system and the network, whereby the interferometer is tilted with respect to the axis of the cavity and forms a little selective filter, whose variation law of the wavelength transmitted in relation to the angle of incidence is identical with that of the dispersive retroreflecting device.
    • 多波长激光源传输包括与潜在透射波长一样多的放大器波导的光通量,用于准直由波导发射的波束的准直光学系统,构成网络的网络和后向反射器,分光回射装置,其定义 每个波导都具有外部谐振腔,而每个波导相对于其相关腔具有内表面和外表面。 具有减小的微调的法布里 - 珀罗干涉仪被放置在准直光学系统和网络之间的空腔中,由此干涉仪相对于腔的轴线倾斜并形成一个小的选择性滤光器,其波长的变化规律被传输 相对于入射角与分散回射装置的入射角相同。