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    • 1. 发明授权
    • Integrated parameter monitoring in a fiber laser/amplifier
    • 光纤激光器/放大器中的综合参数监测
    • US09534952B2
    • 2017-01-03
    • US13805360
    • 2012-03-19
    • Daniel J. CreedenJoseph M. Owen
    • Daniel J. CreedenJoseph M. Owen
    • G02B6/26G02B6/42G01J1/04H01S3/067G02B6/245G02B6/28H01S3/094H01S3/10
    • G01J1/0425G02B6/245G02B6/2852H01S3/06708H01S3/06758H01S3/094007H01S3/10015
    • Techniques are disclosed for monitoring parameters in a high power fiber laser or amplifier system without adding a tap coupler or increasing fiber length. In some embodiments, a cladding stripper is used to draw off a small percentage of light propagating in the cladding to an integrated signal parameter monitor. Parameters at one or more specific wavelengths (e.g., pump signal wavelength, signal/core signal wavelength, etc) can be monitored. In some such cases, filters can be used to allow for selective passing of signal wavelength to be monitored to a corresponding parameter monitor. The filters can be external or may be integrated into a parameter monitor package that includes cladding stripper with integrated parameter monitor. Other parameters of interest (e.g., phase, wavelength) can also be monitored, in addition to, or as an alternative to power. Numerous configurations and variations will be apparent in light of this disclosure (e.g., system-on-chip).
    • 公开了用于监视大功率光纤激光器或放大器系统中的参数的技术,而不添加抽头耦合器或增加光纤长度。 在一些实施例中,包层剥离器用于将在包层中传播的小百分比的光吸收到集成的信号参数监测器。 可监测一个或多个特定波长(例如,泵浦信号波长,信号/核心信号波长等)的参数。 在某些这种情况下,可以使用滤波器来允许选择性地将待监视的信号波长传递到相应的参数监视器。 滤波器可以是外部的,或者可以集成到包括具有集成参数监视器的包层剥离器的参数监视器封装中。 还可以监视其它感兴趣的参数(例如,相位,波长),或作为功率的替代。 根据本公开(例如,片上系统),许多配置和变化将是显而易见的。
    • 4. 发明申请
    • WALK-OFF COMPENSATOR WITH TILT FUNCTION
    • 带倾斜功能的WALK-OFF补偿器
    • US20130155493A1
    • 2013-06-20
    • US13809434
    • 2012-04-20
    • Joseph M. OwenNathan E. Rines
    • Joseph M. OwenNathan E. Rines
    • G02F1/39
    • H01S3/108G02B7/1805G02B26/0883G02F1/353G02F1/39G02F2001/3503G02F2001/3505G02F2001/3542G02F2202/40G02F2203/69H01S3/025H01S3/08059H01S3/094042H01S3/0941H01S3/1655
    • Techniques and structure are disclosed for implementing a spatial walk-off compensation mechanism having an integral tilt function. In some embodiments, the mechanism may comprise a tilt-ball mount having an integrated walk-off compensation medium. In some embodiments, the mechanism may be configured to receive an output beam from a non-linear converter (e.g., optical parametric oscillator or OPO) implementing a non-linear medium comprising a bi-refringent material (e.g., zinc germanium phosphide, or ZnGeP2; cadmium silicon phosphide, or CdSiP2). In some embodiments, the walk-off compensation medium may comprise the same material and/or have the same cut as the non-linear medium. In some embodiments, the mechanism may he manually and/or mechanically adjusted/repositioned to reduce beam walk-off and/or to more precisely direct the beam. In some embodiments, the mechanism may be implemented in mid-infrared (MIR) applications. Numerous configurations and variations will be apparent in light of this disclosure.
    • 公开了用于实现具有整体倾斜功能的空间离散补偿机构的技术和结构。 在一些实施例中,该机构可以包括具有集成的离散补偿介质的倾斜球座。 在一些实施例中,该机构可以被配置为从实现包括双重拒绝材料(例如,磷酸锌锌或ZnGeP 2)的非线性介质的非线性转换器(例如,光学参量振荡器或OPO)接收输出光束 ;磷化镉硅,或CdSiP2)。 在一些实施例中,离散补偿介质可以包括与非线性介质相同的材料和/或具有相同的切割。 在一些实施例中,机构可以手动地和/或机械地调整/重新定位以减少光束偏离和/或更准确地指导光束。 在一些实施例中,该机构可以在中红外(MIR)应用中实现。 鉴于本公开,许多构造和变化将是显而易见的。
    • 5. 发明授权
    • Walk-off compensator with tilt function
    • 带倾斜功能的离合补偿器
    • US09153932B2
    • 2015-10-06
    • US14688238
    • 2015-04-16
    • Joseph M. OwenNathan E. Rines
    • Joseph M. OwenNathan E. Rines
    • H01S3/108G02F1/39H01S3/02H01S3/08H01S3/16H01S3/0941G02F1/35
    • H01S3/108G02B7/1805G02B26/0883G02F1/353G02F1/39G02F2001/3503G02F2001/3505G02F2001/3542G02F2202/40G02F2203/69H01S3/025H01S3/08059H01S3/094042H01S3/0941H01S3/1655
    • Techniques and structure are disclosed for implementing a spatial walk-off compensation mechanism having an integral tilt function. In some embodiments, the mechanism may comprise a tilt-ball mount having an integrated walk-off compensation medium. In some embodiments, the mechanism may be configured to receive an output beam from a non-linear converter (e.g., optical parametric oscillator or OPO) implementing a non-linear medium comprising a bi-refringent material (e.g., zinc germanium phosphide, or ZnGeP2; cadmium silicon phosphide, or CdSiP2). In some embodiments, the walk-off compensation medium may comprise the same material and/or have the same cut as the non-linear medium. In some embodiments, the mechanism may he manually and/or mechanically adjusted/repositioned to reduce beam walk-off and/or to more precisely direct the beam. In some embodiments, the mechanism may be implemented in mid-infrared (MIR) applications. Numerous configurations and variations will he apparent in light of this disclosure.
    • 公开了用于实现具有整体倾斜功能的空间离散补偿机构的技术和结构。 在一些实施例中,该机构可以包括具有集成的离散补偿介质的倾斜球座。 在一些实施例中,该机构可以被配置为从实现包括双重拒绝材料(例如,磷酸锌锌或ZnGeP 2)的非线性介质的非线性转换器(例如,光学参量振荡器或OPO)接收输出光束 ;磷化镉硅,或CdSiP2)。 在一些实施例中,离散补偿介质可以包括与非线性介质相同的材料和/或具有相同的切割。 在一些实施例中,机构可以手动地和/或机械地调整/重新定位以减少光束偏离和/或更准确地指导光束。 在一些实施例中,该机构可以在中红外(MIR)应用中实现。 根据本公开,他将看到许多配置和变化。
    • 6. 发明申请
    • WALK-OFF COMPENSATOR WITH TILT FUNCTION
    • 带倾斜功能的WALK-OFF补偿器
    • US20150222081A1
    • 2015-08-06
    • US14688238
    • 2015-04-16
    • Joseph M. OWENNathan E. RINES
    • Joseph M. OWENNathan E. RINES
    • H01S3/108H01S3/094H01S3/16H01S3/0941H01S3/02H01S3/08
    • H01S3/108G02B7/1805G02B26/0883G02F1/353G02F1/39G02F2001/3503G02F2001/3505G02F2001/3542G02F2202/40G02F2203/69H01S3/025H01S3/08059H01S3/094042H01S3/0941H01S3/1655
    • Techniques and structure are disclosed for implementing a spatial walk-off compensation mechanism having an integral tilt function. In some embodiments, the mechanism may comprise a tilt-ball mount having an integrated walk-off compensation medium. In some embodiments, the mechanism may be configured to receive an output beam from a non-linear converter (e.g., optical parametric oscillator or OPO) implementing a non-linear medium comprising a bi-refringent material (e.g., zinc germanium phosphide, or ZaGeP2; cadmium silicon phosphide, or CdSiP2). In some embodiments, the walk-off compensation medium may comprise the same material and/or have the same cut as the non-linear medium. In some embodiments, the mechanism may be manually and/or mechanically adjusted/repositioned to reduce beam walk-off and/or to more precisely direct the beam. In some embodiments, the mechanism may be implemented in mid-infrared (MIR) applications. Numerous configurations and variations will be apparent in light of this disclosure.
    • 公开了用于实现具有整体倾斜功能的空间离散补偿机构的技术和结构。 在一些实施例中,该机构可以包括具有集成的离散补偿介质的倾斜球座。 在一些实施例中,该机构可以被配置为从实现包括双重拒绝材料(例如,磷酸锌锗或ZaGeP2)的非线性介质的非线性转换器(例如,光参量振荡器或OPO)接收输出光束 ;磷化镉硅,或CdSiP2)。 在一些实施例中,离散补偿介质可以包括与非线性介质相同的材料和/或具有相同的切割。 在一些实施例中,机构可以是手动和/或机械地调整/重新定位以减少光束偏离和/或更精确地引导光束。 在一些实施例中,该机构可以在中红外(MIR)应用中实现。 鉴于本公开,许多构造和变化将是显而易见的。
    • 9. 发明授权
    • Walk-off compensator with tilt function
    • 带倾斜功能的离合补偿器
    • US09036250B2
    • 2015-05-19
    • US13809434
    • 2012-04-20
    • Joseph M. OwenNathan E. Rines
    • Joseph M. OwenNathan E. Rines
    • G02F1/39G02F1/35G02B7/18G02B26/08
    • H01S3/108G02B7/1805G02B26/0883G02F1/353G02F1/39G02F2001/3503G02F2001/3505G02F2001/3542G02F2202/40G02F2203/69H01S3/025H01S3/08059H01S3/094042H01S3/0941H01S3/1655
    • Techniques and structure are disclosed for implementing a spatial walk-off compensation mechanism having an integral tilt function. In some embodiments, the mechanism may comprise a tilt-ball mount having an integrated walk-off compensation medium. In some embodiments, the mechanism may be configured to receive an output beam from a non-linear converter (e.g., optical parametric oscillator or OPO) implementing a non-linear medium comprising a bi-refringent material (e.g., zinc germanium phosphide, or ZnGeP2; cadmium silicon phosphide, or CdSiP2). In some embodiments, the walk-off compensation medium may comprise the same material and/or have the same cut as the non-linear medium. In some embodiments, the mechanism may be manually and/or mechanically adjusted/repositioned to reduce beam walk-off and/or to more precisely direct the beam. In some embodiments, the mechanism may be implemented in mid-infrared (MIR) applications. Numerous configurations and variations will be apparent in light of this disclosure.
    • 公开了用于实现具有整体倾斜功能的空间离散补偿机构的技术和结构。 在一些实施例中,该机构可以包括具有集成的离散补偿介质的倾斜球座。 在一些实施例中,该机构可以被配置为从实现包括双重拒绝材料(例如,磷酸锌锌或ZnGeP 2)的非线性介质的非线性转换器(例如,光学参量振荡器或OPO)接收输出光束 ;磷化镉硅,或CdSiP2)。 在一些实施例中,离散补偿介质可以包括与非线性介质相同的材料和/或具有相同的切割。 在一些实施例中,机构可以是手动和/或机械地调整/重新定位以减少光束偏离和/或更精确地引导光束。 在一些实施例中,该机构可以在中红外(MIR)应用中实现。 鉴于本公开,许多构造和变化将是显而易见的。
    • 10. 发明申请
    • INTEGRATED PARAMETER MONITORING IN A FIBER LASER/AMPLIFIER
    • 光纤激光/放大器集成参数监视
    • US20130087694A1
    • 2013-04-11
    • US13805360
    • 2012-03-19
    • Daniel J. CreedenJoseph M. Owen
    • Daniel J. CreedenJoseph M. Owen
    • G01J1/04
    • G01J1/0425G02B6/245G02B6/2852H01S3/06708H01S3/06758H01S3/094007H01S3/10015
    • Techniques are disclosed for monitoring parameters in a high power fiber laser or amplifier system without adding a tap coupler or increasing fiber length. In some embodiments, a cladding stripper is used to draw off a small percentage of light propagating in the cladding to an integrated signal parameter monitor. Parameters at one or more specific wavelengths (e.g., pump signal wavelength, signal/core signal wavelength, etc) can be monitored. In some such cases, filters can be used to allow for selective passing of signal wavelength to be monitored to a corresponding parameter monitor. The filters can be external or may be integrated into a parameter monitor package that includes cladding stripper with integrated parameter monitor. Other parameters of interest (e.g., phase, wavelength) can also be monitored, in addition to, or as an alternative to power. Numerous configurations and variations will be apparent in light of this disclosure (e.g., system-on-chip).
    • 公开了用于监视大功率光纤激光器或放大器系统中的参数的技术,而不添加抽头耦合器或增加光纤长度。 在一些实施例中,包层剥离器用于将在包层中传播的小百分比的光吸收到集成的信号参数监测器。 可监测一个或多个特定波长(例如,泵浦信号波长,信号/核心信号波长等)的参数。 在某些这种情况下,可以使用滤波器来允许选择性地将待监视的信号波长传递到相应的参数监视器。 滤波器可以是外部的,或者可以集成到包括具有集成参数监视器的包层剥离器的参数监视器封装中。 还可以监视其它感兴趣的参数(例如,相位,波长),或作为功率的替代。 根据本公开(例如,片上系统),许多配置和变化将是显而易见的。