会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Fritless endbell assembly
    • 无花边栓塞组件
    • US4706256A
    • 1987-11-10
    • US876559
    • 1986-06-20
    • Shinan-Chur S. ShengJeffrey KaiserRalph R. JacobsAlan B. Petersen
    • Shinan-Chur S. ShengJeffrey KaiserRalph R. JacobsAlan B. Petersen
    • H01S3/034
    • H01S3/034
    • An endbell assembly operatively associated with a laser body includes a metal endbell component sealed to a crystalline endbell component which terminates with a crystalline optical component. The crystalline endbell and crystalline optical component are hermetically sealed without using a frit. This is achieved by polishing and a modified optical contacting technique whereby the optical component and crystalline endbell component are polished to a flatness of about 1/2 wavelength of light, placed in a contacting position and then thermally cycled at a temperature of about 400.degree.-500.degree. C. for about 1 to 10 hours, forming a substantially uniform unitary body. This seal is mechanically strong and minimizes the introduction of contaminants into the endbell assembly. In one embodiment, the crystalline endbell component is metallized and braze-sealed to the metal endbell component. In another embodiment, the two endbell components are hermetically sealed by modified optical contact and thermal cycling.
    • 与激光器主体可操作地相关联的端耳组件包括密封到结晶端子部件的金属端塞部件,其以结晶光学部件终止。 晶体端耳和结晶光学元件在不使用玻璃料的情况下气密密封。 这通过抛光和修改的光学接触技术实现,由此将光学部件和结晶端耳部件抛光到约1/2波长的光的平面度,放置在接触位置,然后在约400℃的温度下热循环, 500℃约1至10小时,形成基本均匀的整体。 这种密封是机械坚固的,并且最小化将污染物引入到端耳组件中。 在一个实施例中,晶体端耳组件被金属化并且钎焊密封到金属端耳组件。 在另一个实施例中,两个端耳组件通过改进的光学接触和热循环气密密封。
    • 6. 发明授权
    • Magnetic field profile for improved ion laser performance
    • 磁场分布,用于改善离子激光性能
    • US4974228A
    • 1990-11-27
    • US269193
    • 1988-11-08
    • Alan B. Petersen
    • Alan B. Petersen
    • H01S3/032
    • H01S3/0326
    • An ion laser is constructed with means for generating a magnetic confinement field operating in the cathode transition region of the laser. The magnetic confinement field is preferably generated by first and second magnetic windings, each axially aligned with the laser volume, but disposed so as to generate first and second magnetic fields which are of opposite polarity. The first and second magnetic fields of opposite polarity combine to create a region of zero axial magnetic field, which in a preferred embodiment is located substantially within the cathode transition region of the laser. In an alternate embodiment, the first and second magnetic fields are of the same polarity, and therefore generate a region of minimized axial magnetic field, preferably located substantially within the cathode transition region of the laser.
    • 离子激光器被构造成用于产生在激光器的阴极过渡区域中操作的磁约束场的装置。 磁限制场优选地由第一和第二磁性绕组产生,每个磁绕轴与激光器体积轴向对准,但被设置成产生具有相反极性的第一和第二磁场。 相反极性的第一和第二磁场组合以产生零轴向磁场的区域,其在优选实施例中基本位于激光器的阴极过渡区域内。 在替代实施例中,第一和第二磁场具有相同的极性,因此产生最小的轴向磁场的区域,优选地位于激光器的阴极过渡区域内。
    • 7. 发明授权
    • Laser with adjustable mirror for mode control
    • 带可调式镜子的激光模块控制
    • US4951285A
    • 1990-08-21
    • US214747
    • 1988-07-05
    • John L. ColeDavid WrightAlan B. PetersenShinan-Chur S. ShengTroy M. Artusy
    • John L. ColeDavid WrightAlan B. PetersenShinan-Chur S. ShengTroy M. Artusy
    • H01S3/08H01S3/098
    • H01S3/0805H01S3/08
    • A laser comprising a first mirror having a shape. The shape is generally spherical for typical lasers with the shape of the mirror being defined by the radius of curvature of a reflective surface on the mirror. A second mirror is provided mounted with the first to define a laser cavity. The cross-sectional sizes of the modes of oscillation within the laser cavity are defined by the shape of the first mirror. An aperture at a given location having a fixed cross-sectional size is mounted with the laser cavity. Alternatively, a laser bore which forms an effective aperture at a given location is used. A means is mounted with the first mirror for adjusting the shape of the first mirror so that the cross-sectional size of a selected mode at the given location matches the cross-sectional size of the aperture.
    • 一种激光器,包括具有形状的第一反射镜。 典型的激光器的形状通常为球形,其反射镜的形状由反射镜上的反射表面的曲率半径限定。 提供第二反射镜,其安装有第一反射镜以限定激光腔。 激光腔内的振动模式的横截面尺寸由第一反射镜的形状决定。 具有固定横截面尺寸的给定位置处的孔安装有激光腔。 或者,使用在给定位置处形成有效孔径的激光孔。 安装有第一反射镜的装置用于调节第一反射镜的形状,使得给定位置处的选定模式的横截面尺寸与孔的横截面尺寸相匹配。