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    • 5. 发明申请
    • CONTINUOUS WAVE OR ULTRAFAST LASERS
    • 连续波或超声波激光
    • US20120014397A1
    • 2012-01-19
    • US12837530
    • 2010-07-16
    • Bien ChannDaniel J. RipinTso Yee FanAntonio Sanchez-Rubio
    • Bien ChannDaniel J. RipinTso Yee FanAntonio Sanchez-Rubio
    • H01S3/098H01S3/13
    • H01S3/1307H01S3/2308H01S3/2333H01S3/2383H01S3/2391
    • A laser system comprises: a seed oscillator, having a seed output; dispersive optics, operative to receive the seed output and divide the seed output into spectrally separate seed components; an array of individually addressable, phase adjustable laser amplifiers corresponding to the spectrally separate components, each laser amplifier receiving as its seed one of the spectrally separate seed components and producing one of the spectrally separate amplified components; and phase actuators controlling the individually addressable, phase adjustable laser amplifiers. A method of operating a laser system comprises: generating a seed signal; dividing the seed signal into spectrally separate component signals; amplifying the spectrally separate component signals; recombining the spectrally separate component signals into an amplified output; and controlling phases of the amplified spectrally separate component signals. Both single-pass and double-pass amplifier array versions are disclosed.
    • 激光系统包括:具有种子输出的种子振荡器; 分散光学器件,用于接收种子输出并将种子输出分成光谱分离的种子分量; 每个激光放大器作为其种子接收光谱分离的种子组分之一并产生光谱分离的放大组件之一的独立可寻址相位可调激光放大器阵列; 和相位致动器控制可单独寻址的相位可调激光放大器。 操作激光系统的方法包括:产生种子信号; 将种子信号划分成光谱分离的分量信号; 放大光谱分离的分量信号; 将光谱分离的分量信号重新组合成放大的输出; 以及控制放大的光谱分离分量信号的相位。 公开了单通和双通放大器阵列版本。
    • 6. 发明申请
    • TWO-DIMENSIONAL WAVELENGTH-BEAM-COMBINING OF LASERS USING FIRST-ORDER GRATING STACK
    • 使用一阶光栅堆叠的激光二维波长光束组合
    • US20110222574A1
    • 2011-09-15
    • US12720186
    • 2010-03-09
    • Bien ChannTso Yee FanAntonio Sanchez-Rubio
    • Bien ChannTso Yee FanAntonio Sanchez-Rubio
    • H01S3/08H01S3/07
    • G02B27/1006G02B5/1819G02B19/0014G02B19/0057G02B27/0944G02B27/0966G02B27/1093H01S5/4012H01S5/4025H01S5/4087
    • A method and apparatus for two-dimensional wavelength beam combining of laser sources. In one example, an external cavity multi-wavelength laser includes an array of laser emitters each producing an optical beam having a specified wavelength, a grating stack comprising a plurality of first-order diffraction gratings arranged linearly in a first dimension, and a dispersive element. The laser further includes a cylindrical telescope that images the optical beams from the array of laser emitters onto the grating stack. A first cylindrical transform lens spatially overlaps the optical beams in a second dimension forming a first region of overlap at the grating stack. A second cylindrical transform lens spatially overlaps the optical beams from the grating stack in the first dimension forming a second region of overlap at the dispersive element. The dispersive element transmits a multi-wavelength output beam comprising the spatially overlapped optical beams from the array of laser emitters.
    • 一种用于激光源的二维波长光束组合的方法和装置。 在一个示例中,外腔多波长激光器包括激光发射器的阵列,每个激光发射器产生具有特定波长的光束;光栅堆叠,包括在第一维度线性布置的多个一级衍射光栅,以及分散元件 。 激光器还包括圆柱形望远镜,其将来自激光发射器阵列的光束成像到光栅堆叠上。 第一圆柱形变换透镜在第二维度上与光束空间重叠,形成在光栅堆叠处的第一重叠区域。 第二圆柱形变换透镜在第一维度上与来自光栅堆叠的光束在空间上重叠,从而在分散元件处形成第二重叠区域。 色散元件发射包括来自激光发射器阵列的空间重叠的光束的多波长输出光束。
    • 7. 发明授权
    • Beam combining of diode laser array elements for high brightness and power
    • 光束组合二极管激光器阵列元件,用于高亮度和高功率
    • US06192062B1
    • 2001-02-20
    • US09498462
    • 2000-02-04
    • Antonio Sanchez-RubioTso Yee Fan
    • Antonio Sanchez-RubioTso Yee Fan
    • H01S308
    • H01S5/4062H01S3/067H01S3/2383H01S5/143H01S5/4087
    • The present invention also features an external cavity laser source that includes a free space external cavity comprising a laser array, an optical element, a dispersive element, and a partially reflecting element. The laser array comprises at least two optical gain elements where each of the at least two optical gain elements generate optical radiation having a unique wavelength. The optical element has a focal plane and is positioned to substantially place the focal plane at the at least two optical gain elements and to intercept the generated optical radiation. The dispersive element is positioned substantially at the focal plane of the optical element. The partially reflecting element is positioned to intercept radiation from the dispersive element. The partially reflecting element and the gain elements together forming the free space laser cavity that defines the at least first and second wavelength.
    • 本发明还具有外腔激光源,其包括自由空间外腔,其包括激光阵列,光学元件,分散元件和部分反射元件。 激光器阵列包括至少两个光学增益元件,其中至少两个光学增益元件中的每一个产生具有独特波长的光辐射。 光学元件具有焦平面并且被定位成将焦平面基本上放置在至少两个光学增益元件处并且截取所产生的光辐射。 色散元件基本上位于光学元件的焦平面处。 定位部分反射元件以拦截来自色散元件的辐射。 部分反射元件和增益元件一起形成限定至少第一和第二波长的自由空间激光腔。
    • 9. 发明申请
    • EXTERNAL-CAVITY ONE-DIMENSIONAL MULTI-WAVELENGTH BEAM COMBINING OF TWO-DIMENSIONAL LASER ELEMENTS
    • 二维激光元件的外部一维多波长光束组合
    • US20100110556A1
    • 2010-05-06
    • US12611514
    • 2009-11-03
    • Bien ChannTso Yee FanAntonio Sanchez-Rubio
    • Bien ChannTso Yee FanAntonio Sanchez-Rubio
    • G02B27/10
    • H01S5/4062H01S5/4012H01S5/405H01S5/4087
    • An external-cavity one-dimensional multi-wavelength beam combiner that performs wavelength beam combining along a stacking dimension of a laser stack formed of a plurality of laser arrays, each laser array configured to generate optical radiation having a unique wavelength, and each of the plurality of laser arrays including a plurality of laser emitters arranged along an array dimension of the laser stack. The multi-wavelength beam combiner includes a cylindrical telescope configured to image each of the laser emitters along a slow axis of the laser emitters, a transform lens arranged to intercept the optical radiation from each of the plurality of laser arrays and combine the optical radiation along a stacking dimension of the laser stack to form a multi-wavelength optical beam, and a diffraction element positioned at a region of overlap of the optical radiation to receive and transmit the multi-wavelength optical beam.
    • 一种外腔一维多波长光束组合器,其沿着由多个激光阵列形成的激光器堆叠的堆叠尺寸进行波长束组合,每个激光器阵列被配置为产生具有独特波长的光辐射,并且每个 多个激光器阵列包括沿激光器堆叠的阵列尺寸布置的多个激光发射器。 多波长光束组合器包括圆柱形望远镜,其被配置为沿着激光发射器的慢轴对每个激光发射器成像;变换透镜,被设置成截取来自多个激光阵列中的每一个的光辐射,并将光学辐射 激光器堆叠的堆叠尺寸以形成多波长光束,以及衍射元件,其位于光辐射的重叠区域以接收和发射多波长光束。
    • 10. 发明申请
    • EXTERNAL-CAVITY ONE-DIMENSIONAL MULTI-WAVELENGTH BEAM COMBINING OF TWO-DIMENSIONAL LASER ELEMENTS
    • 二维激光元件的外部一维多波长光束组合
    • US20120002272A1
    • 2012-01-05
    • US13231407
    • 2011-09-13
    • Bien ChannTso Yee FanAntonio Sanchez-Rubio
    • Bien ChannTso Yee FanAntonio Sanchez-Rubio
    • H01S3/23G02B27/44G02B27/10G02B27/12
    • H01S5/4062H01S5/4012H01S5/405H01S5/4087
    • An external-cavity one-dimensional multi-wavelength beam combiner that performs wavelength beam combining along a stacking dimension of a laser stack formed of a plurality of laser arrays, each laser array configured to generate optical radiation having a unique wavelength, and each of the plurality of laser arrays including one or more laser emitters arranged along an array dimension of the laser stack. The multi-wavelength beam combiner includes an optical imaging element configured to image each of the laser emitters along a slow axis of the laser emitters, an optical focusing element arranged to intercept the optical radiation from each of the plurality of laser arrays and combine the optical radiation along a stacking dimension of the laser stack to form a multi-wavelength optical beam, and a diffraction element positioned at a region of overlap of the optical radiation to receive and transmit the multi-wavelength optical beam.
    • 一种外腔一维多波长光束组合器,其沿着由多个激光阵列形成的激光器堆叠的堆叠尺寸进行波长束组合,每个激光器阵列被配置为产生具有独特波长的光辐射,并且每个 多个激光器阵列包括沿激光器堆叠的阵列尺寸布置的一个或多个激光发射器。 多波长光束组合器包括光学成像元件,其配置成沿着激光发射器的慢轴对每个激光发射器进行成像;光学聚焦元件,被设置成截取来自多个激光阵列中的每一个的光辐射,并将光学 沿着激光堆的堆叠尺寸的辐射以形成多波长光束,以及位于光辐射的重叠区域处的衍射元件,以接收和发射多波长光束。