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    • 1. 发明授权
    • Laser with controlled geometry fluorescent converter
    • 激光与控制几何荧光转换器
    • US4839902A
    • 1989-06-13
    • US90884
    • 1987-08-31
    • Steve Guch, Jr.
    • Steve Guch, Jr.
    • H01S3/093
    • H01S3/093
    • The efficiency of an optically pumped solid state laser is substantially improved with a controlled geometry fluorescent converter between the pump light source and the lasing medium. Fluorescent materials have the capability of absorbing broadband pumping radiation, shifting it in wavelength and re-emitting it in the absorption band of the selected solid state laser medium. Use of angular formations having the converter surface facing the laser medium reduces fluorescent light trapping within the converter due to internal reflection thereby greatly increasing the total light output of the converter and thus the efficiency of the laser.
    • 在泵浦光源和激光介质之间的受控几何形状荧光转换器,光泵浦固态激光器的效率得到显着提高。 荧光材料具有吸收宽带泵浦辐射的能力,将其移动波长并在所选择的固态激光介质的吸收带中再发射。 使用具有面向激光介质的转换器表面的角形结构由于内部反射而减少转换器内的荧光捕获,从而大大增加了转换器的总光输出并因此大大增加了激光器的效率。
    • 2. 发明授权
    • Conduction cooled solid state laser
    • 传导冷却固态激光器
    • US4594716A
    • 1986-06-10
    • US775088
    • 1985-09-12
    • Steve Guch, Jr.
    • Steve Guch, Jr.
    • H01S3/04H01S3/042H01S3/093H05K1/05H01S3/045
    • H01S3/093H01S3/042H01S3/025H01S3/0405H01S3/0407H05K1/05H05K2201/209
    • The exterior surfaces of a laser rod and pump lamp are covered with a highly reflective metal foil to prevent light leakage from the rod and lamp. The laser rod and pump lamp operate within a cavity inside a heat sink. Between the metal foil and the housing is a thermally conductive fluidic material selected to provide a tailored thermal impedance between the heat sink and the rod and pump to optimize the steady state temperatures of these components. The conductive fluid is not circulated but is contained to act as a simple heat conductor. The optically reflective and the heat transfer functions of the laser pumping operation are essentially separate from each other, enabling selection of materials for these respective functions to enhance performance of the laser and substantially simplify its construction.
    • 激光棒和泵灯的外表面被高度反光的金属箔覆盖,以防止光和棒的光泄漏。 激光棒和泵灯在散热器内部的腔内工作。 在金属箔和壳体之间是导热流体材料,其被选择为在散热器和棒和泵之间提供定制的热阻抗,以优化这些部件的稳态温度。 导电流体不会循环而被包含以用作简单的导热体。 激光泵送操作的光反射和热传递功能基本上彼此分离,使得能够选择用于这些相应功能的材料以增强激光器的性能并且基本上简化其结构。
    • 4. 发明授权
    • Side pumped, Q-switched microlaser
    • 侧泵,Q开关微型激光器
    • US06219361B1
    • 2001-04-17
    • US09337716
    • 1999-06-21
    • Steve Guch, Jr.Charles L. Stonecypher
    • Steve Guch, Jr.Charles L. Stonecypher
    • H01S311
    • H01S3/0627H01S3/0606H01S3/0612H01S3/08095H01S3/094H01S3/113
    • A microlaser is provided that has a microresonator and a pump source for side pumping the microresonator. The microresonator includes an active gain medium and a Q-switch that extend lengthwise between the opposed end faces of the microresonator. The pump source is therefore positioned so as to introduce pump signals into the microresonator via the side surface that is adjacent to and defined by the active gain medium. By side pumping the microresonator, the microlaser can generate a series of pulses having greater pulse energies and greater average power levels than the pulses provided by conventional microlasers. In addition, the side pumped microlaser can also generate pulses having greater pulse widths than the pulses provided by conventional microlasers of a similar size. As such, the side pumped microlaser can be employed in more demanding applications that require pulses having greater pulse widths as well as pulses that have greater pulse energy and greater average power than are typically provided by conventional end pumped microlasers.
    • 提供了一种微激光器,其具有微谐振器和用于侧泵浦微谐振器的泵浦源。 微谐振器包括主动增益介质和在微谐振器的相对端面之间纵向延伸的Q开关。 因此,泵浦源被定位成通过与主动增益介质相邻并由有源增益介质限定的侧表面将泵浦信号引入微谐振器。 通过旁路泵浦微谐振器,微激光器可以产生具有比由常规微激光器提供的脉冲更大的脉冲能量和更大的平均功率电平的一系列脉冲。 此外,侧泵浦微激光器还可以产生具有比由类似尺寸的常规微激光器提供的脉冲更大的脉冲宽度的脉冲。 因此,侧泵浦微激光器可以用于需要具有更大脉冲宽度的脉冲的更苛刻的应用中,以及具有比通常的端部泵送微型激光器通常提供的更大的脉冲能量和更大的平均功率的脉冲。
    • 5. 发明授权
    • Boresight alignment method
    • 光轴对准方法
    • US06211951B1
    • 2001-04-03
    • US09375207
    • 1999-08-16
    • Steve Guch, Jr.
    • Steve Guch, Jr.
    • G01B1126
    • G01S7/4811F41G3/326G01C15/002G01S7/4972
    • A boresight alignment method is used for aligning a laser with an optical sighting system in a laser designator or the like. The method includes selecting a target formed of a flat sheet of material, such as a metal foil, supporting the selected target at the focus of a collimating telescope in the path of a laser beam of a laser and optical sighting system combination, such as in a laser designator, focusing the laser beam onto the one side of the target, and burning an aperture in the target with the laser beam. The method includes illuminating the target burned aperture from the rear thereof with a visible light or with an infrared source and then aligning the optical sighting system with the illuminated target aperture. Both the day and night viewing optics can be aligned by providing pinhole illumination with multi-spectral target pinhole illumination. The target may be mounted so that it can be rotated to provide successive alignments of the same or different laser optical sighting systems. The target can be an aluminum foil supported on a metal frame or with a paper or polymer backing. An optical sighting system can be aligned to a laser with high accuracy under rugged military and industrial field operating conditions.
    • 使用视轴对准方法将激光与激光指示器等中的光学瞄准系统对准。 该方法包括:选择由诸如金属箔的平板材料形成的目标,其在激光束和光学瞄准系统组合的路径中的准直望远镜的焦点处支撑所选择的靶,例如 激光指示器,将激光束聚焦在靶的一侧,并用激光束燃烧靶中的孔。 该方法包括用可见光或红外光源从其后部照射目标燃烧光圈,然后将光学瞄准系统与照射的目标光圈对准。 通过提供具有多光谱目标针孔照明的针孔照明,可以对昼夜观察光学元件进行对准。 靶可以被安装成使得其可以旋转以提供相同或不同的激光光学瞄准系统的连续对准。 靶材可以是支撑在金属框架上或用纸或聚合物背衬的铝箔。 光学瞄准系统可以在坚固的军事和工业现场操作条件下与高精度对准激光。
    • 6. 发明授权
    • Multiple wavelength laser
    • 多波长激光
    • US4494235A
    • 1985-01-15
    • US606543
    • 1984-05-03
    • Steve Guch, Jr.Phillip J. GardnerLeonard W. BravermanRobert W. Jones
    • Steve Guch, Jr.Phillip J. GardnerLeonard W. BravermanRobert W. Jones
    • H01S3/081H01S3/098
    • H01S3/0805H01S3/0812H01S3/106
    • A pulsed or CW laser is rapidly switched to operate at one or more selectable wavelengths by means of intracavity insertion of beam dispersion and focussing elements and an apertured focal plane mask and shutter assembly. The laser beam has an axis and is dispersed into components or sub-beams having different axes and representing different wavelengths, the sub-beams being focussed to substantially reduced diameters on the focal plane mask at points, respectively, at which apertures are formed. Movable shutters adjacent to the respective apertures control alternate opening of and closing of the apertures and selectively permit the laser to resonate at at least one of a plurality of wavelengths corresponding to that of the sub-beam passing through an open aperture. Mask apertures having very small diameters (
    • 脉冲或CW激光器通过光束色散和聚焦元件的腔内插入以及有孔焦平面掩模和快门组件被快速切换以在一个或多个可选择的波长下操作。 激光束具有轴并被分散到具有不同轴线并且表示不同波长的部件或子光束中,分光束被聚焦成分别在形成孔的点处的焦平面掩模上的基本上减小的直径。 邻近相应孔的可动百叶窗控制孔的交替打开和关闭,并且选择性地允许激光以对应于通过打开孔的子束的多个波长的至少一个波长谐振。 实现了具有非常小直径(<50微米)和分离的掩模孔,使得能够以毫秒为单位在不同的工作波长之间进行切换。 通过将子光束聚焦在聚焦元件的焦平面上,将无穷远的子光束的空间分布变换到焦平面,从而以最小的空间要求增强光谱选择性。
    • 7. 发明授权
    • Laser electrode assembly
    • 激光电极组件
    • US4390993A
    • 1983-06-28
    • US264367
    • 1981-05-18
    • Richard J. SojkaLeonard W. BravermanSteve Guch, Jr.David J. Clark
    • Richard J. SojkaLeonard W. BravermanSteve Guch, Jr.David J. Clark
    • H01S3/038H01S3/097
    • H01S3/038
    • A laser electrode assembly comprises an elongated bar having a plurality of longitudinally spaced sockets and is removably secured to a carrier which is anchored to the laser base and has a like number of plugs resiliently press-fitted within the sockets, respectively. Each plug has opposed sides to which are fastened a plurality of outwardly curved resilient fingers extending parallel to the direction of insertion of the plugs into the sockets. Each socket has a width less than the overall width of the plug and finger combination so that the fingers resiliently frictionally engage the bar within each socket. The bar is readily removed from the carrier for maintenance and repair purposes by prying the former from the plugs without necessitating removal of screws or bolts and thereafter passing the bar through the window opening aligned with the discharge gap.
    • 激光电极组件包括具有多个纵向间隔开的插座的细长条,并且可移除地固定到托架上,该托架锚固到激光基座上,并且具有分别弹性压配合在插座内的相同数量的插头。 每个插头具有相对的侧面,其两侧紧固着多个向外弯曲的弹性指状物,平行于将插头插入插座的方向延伸。 每个插座具有小于插头和手指组合的总宽度的宽度,使得手指弹性地摩擦地接合每个插座内的杆。 为了维护和修理目的,通过从插头中将前者从插头上拆下而不需要去除螺钉或螺栓,然后使该杆通过与放电间隙对齐的窗口,从而容易地将该棒从载体上移除。
    • 8. 发明授权
    • Multiple mode laser
    • 多模激光
    • US06580732B1
    • 2003-06-17
    • US09617246
    • 2000-07-14
    • Steve Guch, Jr.Charles L. StonecypherWilliam M. RobertsRonald R. Selleck
    • Steve Guch, Jr.Charles L. StonecypherWilliam M. RobertsRonald R. Selleck
    • H01S3098
    • H01S3/1103H01S3/1022H01S3/1075H01S3/115
    • A laser apparatus is described having multiple modes of operation using intracavity optical switching within a laser resonator. The laser resonator has a solid state gain medium and one or more optical switches located between a pair of end reflectors. The pump for the gain medium has controlled duration to allow varying the pumping energy and pulse repetition rate. The laser has a Q-switched mode for generating energy from the laser resonator at a fixed level of outcoupling when the laser pump is operated to produce a range of predetermined pulse, rates and durations. The laser also has a cavity dumped mode of operation in which the laser pump is operated to produce a second range of predetermined higher pulse repetition rates and shorter pulse durations so that the pulse energy, rate and duration are selected by first Q-switching with essentially no outcoupling and then rapidly cavity dumping all the optical energy in the resonator. Intracavity optical switching of the laser resonator is used to achieve the two distinct modes of operation, the first being conventional Q-switched operation with pulse width equivalent to several cavity round trip times and the second being Q-switched cavity, dumped operation with pulse width equivalent to about one cavity round trip time. Use of this apparatus with external frequency shifting optics is also described.
    • 在激光谐振器内使用腔内光开关来描述具有多种操作模式的激光装置。 激光谐振器具有固态增益介质和位于一对端反射器之间的一个或多个光学开关。 用于增益介质的泵具有受控的持续时间,以允许改变泵浦能量和脉冲重复率。 当激光泵被操作以产生一定范围的预定脉冲,速率和持续时间时,激光器具有用于在固定水平的外耦合时从激光谐振器产生能量的Q开关模式。 激光器还具有腔倾倒操作模式,其中激光泵被操作以产生预定的较高脉冲重复率和较短脉冲持续时间的第二范围,使得脉冲能量,速率和持续时间通过基本上通过第一Q开关来选择 没有外耦合,然后迅速空腔倾倒所有的光能在谐振器。 激光谐振器的腔内光开关用于实现两种不同的工作模式,第一种是常规的Q开关操作,脉冲宽度等于几个腔体往返时间,第二种是Q开关腔,具有脉冲宽度 相当于大约一个空腔往返时间。 还描述了使用这种装置与外部变频光学器件。
    • 9. 发明授权
    • Method and apparatus for testing materials for use in a laser resonator
    • 用于测试用于激光谐振器的材料的方法和装置
    • US5729341A
    • 1998-03-17
    • US614528
    • 1996-03-13
    • Floyd E. HovisBart A. ShepherdChris RadcliffeSteve Guch, Jr.
    • Floyd E. HovisBart A. ShepherdChris RadcliffeSteve Guch, Jr.
    • G01N21/88G01N21/01G01N21/00
    • G01N21/88
    • A method and apparatus for testing materials for use in a laser resonator includes selecting a test fixture apparatus having a housing with an internal chamber volume selected to approximate the internal volume of a predetermined laser resonator and having a pair of sealed windows therein which are removably attached to the housing and having optical coatings selected to match the coating on the optics of a laser. The housing has a removable cover and a gas purging opening. A laser of a predetermined wavelength and power is mounted adjacent the test fixture and is aligned for directing the laser beam through both of the windows of the test fixture. A material is placed in the test fixture and a laser beam directed through the coated windows for a predetermined period of time and thereafter the coated windows are examined for damage or contamination. The test fixtures are also cleaned and certified prior to testing so that a preselected test fixture can determine damage for selective materials used therein.
    • 一种用于测试用于激光谐振器的材料的方法和装置,包括选择具有壳体的测试固定装置,所述壳体具有选择为接近预定激光谐振器的内部体积并具有可拆卸地附接的一对密封窗口 并且具有选择用于匹配激光器的光学器件上的涂层的光学涂层。 壳体具有可移除的盖和气体吹扫开口。 预定波长和功率的激光器被安装在测试夹具附近,并被对准以将激光束引导通过测试夹具的两个窗口。 将材料放置在测试夹具中,并将激光束定向穿过涂覆的窗户一段预定的时间,此后检查涂覆窗口是否有损坏或污染。 测试夹具在测试之前也经过清洁和认证,以便预选的测试夹具可以确定其中使用的选择性材料的损坏。