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    • 2. 发明授权
    • Method for fabricating and using a light waveguide
    • 制造和使用光波导的方法
    • US07217585B1
    • 2007-05-15
    • US11395702
    • 2006-03-31
    • David S. SumidaAuthi A. NarayananHans W. Bruesselbach
    • David S. SumidaAuthi A. NarayananHans W. Bruesselbach
    • H01L21/20
    • G02B6/1342
    • A waveguide is fabricated by first preparing two waveguide precursor pieces. Each waveguide precursor piece includes a single-crystal substrate, and an epitaxial coating layer of an oxide coating material on the substrate. The oxide substrate material preferably comprises yttrium as a substrate-material cation, and the oxide coating material preferably comprises a coating-material cation selected from the group consisting of ytterbium, thulium, erbium, and holmium. The two substrates are placed together with the coating layers in contact to form a precursor structure. The precursor structure is heated to an elevated diffusion temperature so that the coating layers bond together and the coating materials and the respective substrate materials interdiffuse to form the waveguide having an interdiffused region. A laser beam may be directed through the interdiffused region, while the interdiffused region is optionally optically pumped through one or both of the substrates.
    • 通过首先制备两个波导前体件来制造波导。 每个波导前体件包括单晶衬底和在衬底上的氧化物涂层材料的外延涂层。 氧化物基材优选包含作为基材材料阳离子的钇,氧化物涂层材料优选包含选自镱,ium,铒和钬的涂料阳离子。 将两个基板与涂层接触放置在一起以形成前体结构。 将前体结构加热到升高的扩散温度,使得涂层结合在一起,并且涂层材料和相应的衬底材料相互扩散以形成具有相互扩散区​​域的波导。 激光束可以被引导穿过相互扩散的区域,而相互扩散的区域可选地被光泵浦通过一个或两个基底。
    • 4. 发明授权
    • Multiple-disk laser system
    • 多盘激光系统
    • US06987789B2
    • 2006-01-17
    • US10383376
    • 2003-03-06
    • Hans W. BruesselbachDavid S. Sumida
    • Hans W. BruesselbachDavid S. Sumida
    • H01S3/091
    • H01S3/07H01S3/0604H01S3/0941
    • A laser system for producing a laser beam, the laser system having top and bottom heat-sinking bars forming the structure of the laser system and plurality of disks comprising a laser material mounted on both the bottom heat-sinking bar and the top heat-sinking bar. Also mounted on both heat-sinking bars is a plurality of pump diode bars. Each pump diode bar is preferably mounted opposite a corresponding laser disk on the opposite heat-sinking bar. The pump diode bars and the disks are symmetrically mounted on the top and bottom heat-sinking bars, so that each heat-sinking bar has an alternating pattern of pump diode bars and laser disks. The laser system is configured such that the lasing beams impinge on the disks with an incidence angle far off normal.
    • 一种用于产生激光束的激光系统,具有形成激光系统结构的顶部和底部散热棒的激光系统和包括安装在两个底部散热条和顶部散热片上的激光材料的多个盘 酒吧。 还安装在两个散热棒上的是多个泵二极管条。 每个泵二极管杆优选地安装在相对的散热棒上相应的激光盘的相对侧。 泵二极管棒和盘对称地安装在顶部和底部散热棒上,使得每个散热棒具有泵二极管条和激光盘的交替模式。 激光系统被配置为使得激光束以远离正常的入射角撞击在盘上。
    • 10. 发明授权
    • High gain laser amplifier
    • 高增益激光放大器
    • US06646793B2
    • 2003-11-11
    • US09736997
    • 2000-12-14
    • Hans W. BruesselbachAlexander A. BetinDavid S. Sumida
    • Hans W. BruesselbachAlexander A. BetinDavid S. Sumida
    • H01S300
    • H01S3/063H01S3/0602H01S3/0612H01S3/0617H01S3/1618H01S3/1643
    • A high gain optical amplifier and method. Generally, the inventive amplifier includes a first crystal having an axis and a first index of refraction and a second crystal bonded to the first crystal about the axis and having a second index of refraction. The first index is higher than the second index such that light through the first crystal is totally internally reflected. In the illustrative embodiment, the first crystal is Yb:YAG with an index of approximately 1.82, the second crystal is Sapphire with an index of approximately 1.78, and the axis is the propagation axis. The invention is, in its preferred embodiment, a light guide fabricated out of crystalline materials, diffusion bonded together. If the core of the light guide is doped with laser ions, high gain amplifiers made be designed and operable over a large étendue. With a judicious choice of the laser crystal and cladding materials, shape, and bonding technique, the guided amplifier is much less susceptible to parasitic oscillation than amplifiers constructed in accordance with conventional teachings. The clad core is also able to handle larger thermal load without breakage than can an unclad core.
    • 高增益光放大器和方法。 通常,本发明的放大器包括具有轴和第一折射率的第一晶体,以及围绕轴线键合到第一晶体并具有第二折射率的第二晶体。 第一指数高于第二指数,使得通过第一晶体的光完全内部反射。 在说明性实施例中,第一晶体为Yb:YAG,折射率约为1.82,第二晶体为蓝宝石,折射率约为1.78,轴为传播轴。 在其优选实施例中,本发明是由结晶材料制成的光导,扩散结合在一起。 如果光导的核心掺杂有激光离子,则高增益放大器可以在大的衰减范围内设计和操作。 通过明智地选择激光晶体和包层材料,形状和结合技术,与根据常规教导构建的放大器相比,引导放大器不太容易发生寄生振荡。 包芯可以处理较大的热负载,而不会破损。