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    • 37. 发明公开
    • Compact mode-locked solid-state laser
    • Kompakter modengekoppelterFestkörperlaser
    • EP2180562A1
    • 2010-04-28
    • EP09013301.8
    • 2009-10-21
    • Fujifilm Corporation
    • Kasamatsu, TadashiYamazoe, ShogoKorogi, Yutaka
    • H01S3/02H01S3/042H01S3/11H01S3/04H01S3/0941H01S3/131
    • H01S3/025H01S3/027H01S3/0401H01S3/0405H01S3/042H01S3/0604H01S3/08H01S3/08004H01S3/08059H01S3/09415H01S3/1118H01S3/1312H01S3/1618H01S2301/085
    • There is provided a mode locked laser device including: a cavity, the cavity having a semiconductor saturable absorbing mirror (14) and a negative dispersion mirror (20) that controls group velocity dispersion within the cavity, disposed in a straight line; a solid-state laser medium (16), disposed in the cavity and outputting oscillating light due to excitation light being incident thereon; an excitation unit that causes the excitation light to be incident on the solid-state laser medium; and a cavity holder (34), the light incident face of the semiconductor saturable absorbing mirror (14) attached to one end of the cavity holder (34), the negative dispersion mirror (20) attached to the other end of the cavity holder (34), and the cavity holder integrally supporting the semiconductor saturable absorbing mirror and the negative dispersion mirror.
      SESAM (14) and solid-state laser medium (16) are temperature controlled with a Peltier cooler (22). The laser emits at high repetition rates soliton pulses stably.
    • 提供了一种模式锁定激光装置,包括:空腔,该空腔具有半导体可饱和吸收镜(14)和负分散反射镜(20),该负色散反射镜控制腔体内的群速度分散,设置在直线上; 固态激光介质(16),其设置在所述空腔中并且由于激发光入射而输出振荡光; 激励单元,其使激发光入射到固态激光介质上; 和空腔保持器(34),所述半导体可饱和吸收反射镜(14)的光入射面附接到所述腔保持器(34)的一端,所述负分散镜(20)附接到所述腔保持器的另一端 34)和一体地支撑半导体可饱和吸收镜和负色散镜的腔保持架。 SESAM(14)和固态激光介质(16)由珀尔贴(Peltier)冷却器(22)进行温度控制。 激光以高重复率发射孤岛脉冲稳定。
    • 39. 发明公开
    • Gas-purged laser system and method thereof
    • Gasgereinigtes Lasersystem und Verfahrendafür
    • EP1973206A1
    • 2008-09-24
    • EP08102320.2
    • 2008-03-05
    • Alcon RefractiveHorizons, Inc.
    • Pettit, George H.Downes, George Richard, IIIBott, Steven E.
    • H01S3/02H01S3/225
    • H01S3/02A61F9/008A61F9/00804H01S3/027H01S3/225
    • A gas-purged laser system (100) and method of gas-purging a laser system are disclosed. One embodiment of the laser system comprises an excimer refractive surgical laser system having a laser beam optical path configured to allow purging of a portion of a volume (140) enclosing the laser beam optical path with a gas, and a gas generator (150), operable to generate the purging gas and provide the gas to the volume portion. The portion of the volume can be the entire volume enclosing the laser beam optical path or a selected portion thereof. The gas can be nitrogen gas and the gas generator can be a self-contained nitrogen generator as will be known to those having skill in the art. Embodiments can further comprise a controller (300) for controlling the flow of purging gas in response to received signals representative of various parameters, such as temperature, oxygen level, pressure, humidity and flow rate.
    • 公开了一种气体净化激光系统(100)和一种气体吹扫激光系统的方法。 激光系统的一个实施例包括准分子折射外科激光系统,其具有被配置为允许用气体吹扫包围激光束光路的体积(140)的一部分的激光束光学路径,以及气体发生器(150) 可操作地产生吹扫气体并将气体提供给体积部分。 体积的一部分可以是包围激光束光路的整个体积或其选定部分。 如本领域技术人员将知道的,气体可以是氮气,气体发生器可以是独立的氮气发生器。 实施例还可以包括控制器(300),用于响应于表示各种参数(例如温度,氧气水平,压力,湿度和流量)的接收信号来控制净化气体的流动。