DISCRETE WAVELENGTH-LOCKED EXTERNAL CAVITY LASER
    3.
    发明申请
    DISCRETE WAVELENGTH-LOCKED EXTERNAL CAVITY LASER 审中-公开
    离散波长锁定外部腔体激光器

    公开(公告)号:WO03058773A3

    公开(公告)日:2003-09-18

    申请号:PCT/US0300601

    申请日:2003-01-08

    CPC classification number: H01S5/142 H01S5/1092 H01S5/143

    Abstract: An external cavity laser (10) (and method of generating laser light) comprising: a laser light source (12); means for collimating light output by the laser light source (12); a diffraction grating (16) receiving collimated light; a cavity feedback mirror (18) reflecting light received from the diffraction grating (16) back to the diffraction grating (16); and means for reliably tuning the external cavity laser to discrete wavelengths.

    Abstract translation: 一种外腔式激光器(10)(和产生激光的方法),包括:激光光源(12); 用于准直激光源(12)输出的光的装置; 接收准直光的衍射光栅(16) 将从所述衍射光栅(16)接收的光反射回所述衍射光栅(16)的腔反馈镜(18); 以及用于可靠地将外腔激光器调谐到离散波长的装置。

    Wavelength agile external cavity diode laser

    公开(公告)号:AU8134201A

    公开(公告)日:2002-02-05

    申请号:AU8134201

    申请日:2001-07-25

    Abstract: An external cavity diode laser and method of generating laser light comprising: generating light from a Fabry-Perot diode laser source; collimating light from the source with an intracavity optical element; reflecting light via a feedback mirror; and employing a diffraction grating to receive light from the optical element, diffract received light to the mirror in a non-zero order, receive reflected light from the mirror, and direct reflected light back towards the optical element and Fabry-Perot diode laser to complete an external cavity, the diffraction grating additionally directing a portion of the received light from the optical element toward a target.

    WAVELENGTH AGILE EXTERNAL CAVITY DIODE LASER

    公开(公告)号:CA2417464A1

    公开(公告)日:2002-01-31

    申请号:CA2417464

    申请日:2001-07-25

    Abstract: The external cavity diode laser and method of generating light comprising: generating light from Fabry-Perot diode laser source (12); collimating light from the source (12) with an intracavity optical element (14); reflecting light via a feedback mirror (18); employing a diffraction grating (16) to receive light from the optical element (14), defract received light to the mirror (18) in a non-zero order; receive reflected light from the mirror (18 ), and direct the reflected light back towards the optical element (14) and Fab ry- Perot diode laser to complete an external cavity (12), the diffraction grati ng (16) additionally directing a portion of the received light from the optical element (14) toward a target.

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