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    • 3. 发明申请
    • LASER LIGHT SOURCE MODULE
    • 激光光源模块
    • US20130279170A1
    • 2013-10-24
    • US13979026
    • 2011-01-17
    • Akira YokoyamaMotoaki TamayaTakayuki Yanagisawa
    • Akira YokoyamaMotoaki TamayaTakayuki Yanagisawa
    • F21V29/00
    • H01S5/0092F21V29/90G02F2001/3546H01S5/02252H01S5/02446H04N9/3161
    • A laser light source module includes a laser light source outputting laser light, a wavelength conversion element converting a wavelength of the laser light, a temperature sensor mounted on a first face of the wavelength conversion element, a heater substrate of a ceramic base material, on which the wavelength conversion element is mounted. A heater is provided on the heater substrate, in which a sub-mount substrate on which the laser light source is mounted and the heater substrate are fixed to a heat sink, and the heat sink includes a concavity at a position corresponding to a projection region of the wavelength conversion element opposite to the substrate, whereby the entire wavelength conversion element is kept at the most suitable operation temperature, and laser light can be wavelength-converted in higher efficiency.
    • 激光光源模块包括输出激光的激光源,将激光的波长转换的波长转换元件,安装在波长转换元件的第一面上的温度传感器,陶瓷基材的加热器基板, 其中波长转换元件被安装。 加热器设置在加热器基板上,其中安装有激光光源的子安装基板和加热器基板固定到散热器,并且散热器包括在对应于投影区域的位置处的凹部 与整个波长转换元件保持在最合适的工作温度,激光可以以更高的效率进行波长转换。
    • 4. 发明申请
    • MODE CONTROL WAVEGUIDE-TYPE LASER DEVICE
    • 模式控制波形激光器件
    • US20130121355A1
    • 2013-05-16
    • US13810750
    • 2010-12-21
    • Noriyuki MiyamotoShuhei YamamotoTakayuki YanagisawaYoshihito Hirano
    • Noriyuki MiyamotoShuhei YamamotoTakayuki YanagisawaYoshihito Hirano
    • H01S3/04
    • H01S3/04H01S3/042H01S3/0632H01S3/0635H01S3/08072H01S3/2308H01S3/2383
    • In a laser device, a control range of focal distance of a generated thermal lens is broadened and reliability is improved. A mode control waveguide-type laser device includes: a planar laser medium having a waveguide structure in a thickness direction of a cross section perpendicular to an optical axis, for generating gain with respect to laser light; a cladding bonded onto the laser medium; and a heat sink bonded onto the laser medium. The laser medium generates a lens effect, and the laser light oscillates in a waveguide mode in the thickness direction, and oscillates in a spatial mode due to the lens effect in a direction perpendicular to the optical axis and the thickness direction. The refractive index distribution within the laser medium is created by generating a temperature distribution in the laser medium depending on a junction area of the cladding and the heat sink.
    • 在激光装置中,所产生的热透镜的焦距的控制范围变宽,可靠性提高。 模式控制波导型激光装置包括:平面激光介质,其在垂直于光轴的横截面的厚度方向上具有波导结构,用于产生相对于激光的增益; 覆盖在激光介质上的包层; 和结合到激光介质上的散热器。 激光介质产生透镜效应,并且激光在厚度方向上以波导模式振荡,并且由于在垂直于光轴和厚度方向的方向上的透镜效应而以空间模式振荡。 激光介质内的折射率分布是通过根据包层和散热器的接合区域在激光介质中产生温度分布而产生的。
    • 5. 发明授权
    • Mode control waveguide laser device
    • 模式控制波导激光器件
    • US07839908B2
    • 2010-11-23
    • US11579454
    • 2005-03-30
    • Takayuki YanagisawaYoshihito HiranoSyuhei YamamotoMasao ImakiKiyohide SakaiYasuharu Koyata
    • Takayuki YanagisawaYoshihito HiranoSyuhei YamamotoMasao ImakiKiyohide SakaiYasuharu Koyata
    • H01S3/04
    • H01S3/0632H01S3/0405H01S3/0612H01S3/08072H01S3/094053H01S3/09415H01S3/109
    • Provided is a device capable of oscillating a plurality of oscillation modes within a laser medium for obtaining a fundamental wave output which is easy in output scaling and high in luminance, thereby enabling a second harmonic conversion which is high in efficiency. The device includes: a laser medium (5) that is planar, has a waveguide structure in a thickness direction of a cross-section that is perpendicular to an optical axis (6), and has a cyclic lens effect in a direction perpendicular to the optical axis (6) and the thickness direction; a clad (4) that is bonded onto one surface of the laser medium (5); and heat sink (3) that is bonded onto one surface side of the laser medium (5) through the clad (4), and in the device, a laser oscillation includes a laser oscillation that oscillates in a waveguide mode of the laser medium (5), and a laser oscillation that oscillates in a plurality of resonator modes that are generated by a cyclic lens effect of the laser medium (5).
    • 提供了一种能够在激光介质内振荡多个振荡模式的装置,用于获得输出缩放容易且亮度高的基波输出,从而实现效率高的二次谐波转换。 该装置包括:平面的激光介质(5),在与光轴(6)垂直的横截面的厚度方向上具有波导结构,并且在垂直于光轴的方向上具有循环透镜效应 光轴(6)和厚度方向; 在激光介质(5)的一个表面上结合的包层(4); 以及通过包层(4)结合到激光介质(5)的一个表面侧的散热器(3),并且在该器件中,激光振荡包括以激光介质的波导模式振荡的激光振荡( 以及以由激光介质(5)的循环透镜效应产生的多个谐振器模式振荡的激光振荡。
    • 7. 发明授权
    • Coherent laser radar
    • 相干激光雷达
    • US07295290B2
    • 2007-11-13
    • US10520128
    • 2003-05-30
    • Takayuki YanagisawaSyuhei YamamotoYoshihito HiranoShumpei KameyamaToshiyuki Ando
    • Takayuki YanagisawaSyuhei YamamotoYoshihito HiranoShumpei KameyamaToshiyuki Ando
    • G01C3/08
    • G01S7/481G01S7/48G01S7/4811G01S7/4813G01S7/4818G01S7/484G01S7/499G01S17/06G01S17/95G02F1/39Y02A90/19
    • To obtain a coherent laser radar device that realizes high reliability and the high output of a transmitted light, the device includes a first optical coupler that branches a laser beam from a laser source into two lights, a local light and a transmitted light, an optical modulator that modulates the transmitted light, a space type optical amplifier that amplifies the modulated transmitted light, a transmitting/receiving optical system that applies the amplified transmitted light toward a target and receives a scattered light from the target, a transmitting/receiving light splitting device that splits the transmitted light and the received light, a second optical coupler that mixes the local light and the split received light together, a photodetector that detects heterodyne of a mixed light, a beat signal amplifier that amplifies a detected signal, a signal processing device that processes an amplified signal, and a display device that displays a processed result. The first and second optical couplers and an optical modulator are structured by polarization maintained type optical elements, and an optical path that extends from the laser source to the space type optical amplifier through the first optical coupler, an optical path that extends from the transmitting/receiving light splitting device to the photodetector through the second optical coupler, and an optical path that extends from the first optical coupler to the second optical coupler are connected by polarization maintained type single mode optical fibers.
    • 为了获得实现高可靠性和透射光的高输出的相干激光雷达装置,该装置包括第一光耦合器,其将来自激光源的激光束分成两个光,局部光和透射光,光学 调制透射光的调制器,放大经调制的透射光的空间型光放大器,将放大的透射光施加到目标并接收来自目标的散射光的发射/接收光学系统,发射/接收分光装置 将透射光和接收光分开的第二光耦合器,将局部光和分离的接收光混合在一起的第二光耦合器,检测混合光的外差的光电检测器,放大检测信号的拍频信号放大器,信号处理装置 处理放大信号,以及显示处理结果的显示装置。 第一和第二光耦合器和光调制器由偏振维持型光学元件构成,以及通过第一光耦合器从激光源延伸到空间型光放大器的光路,从发射/ 通过所述第二光耦合器将光分离装置接收到所述光电检测器,并且从所述第一光耦合器延伸到所述第二光耦合器的光路通过偏振维持型单模光纤连接。