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    • 1. 发明申请
    • IMPROVED LASER NOZZLE AND IODINE INJECTION FOR COIL
    • 改进的激光喷嘴和线圈注射
    • WO2004029736B1
    • 2005-04-21
    • PCT/US0328486
    • 2003-09-10
    • KSY CORP
    • EMANUEL GEORGE
    • H01S3/22H01S3/03H01S3/0953
    • H01S3/2215Y10S372/701
    • An improved nozzle and iodine injector system for use in a COIL are disclosed. The improved nozzle is a two dimensional, minimum length nozzle with a curved sonic line. The iodine injection system utilizes a series of slender struts for iodine injection into the oxygen stream through a series of small orifices that are located within the nozzle such that the need for a diluent gas for the iodine is reduced. The use of the nozzle and iodine injection system, particularly when combined with the SOG disclosed in U.S. Patent Application Serial No. 10/453, 148, have the potential for yielding a highly efficient, high power, optically superior COIL device that is compact, scalable, can operate in space, and has good pressure recovery potential.
    • 公开了一种用于COIL的改进的喷嘴和碘注射器系统。 改进的喷嘴是具有弯曲声波线的二维最小长度的喷嘴。 碘注射系统使用一系列细长的支柱,用于通过位于喷嘴内的一系列小孔注入氧气流中,使得需要减少用于碘的稀释气体。 使用喷嘴和碘注射系统,特别是当与美国专利申请序列号10/453,148中公开的SOG组合时,具有产生紧凑的高效率,高功率,光学上优良的COIL装置的潜力, 可扩展,可在空间运行,具有良好的压力恢复潜力。
    • 2. 发明申请
    • PATENT APPLICATION FOR IMPROVED LASER NOZZLE AND IODINE INJECTION FOR COIL
    • 专利申请改进激光喷枪和碘注射线圈
    • WO2004029736A2
    • 2004-04-08
    • PCT/US0328486
    • 2003-09-10
    • KSY CORP
    • EMANUEL GEORGE
    • H01S3/22G05B
    • H01S3/2215Y10S372/701
    • An improved nozzle and iodine injector system for use in a COIL are disclosed. The improved nozzle is a two dimensional, minimum length nozzle with a curved sonic line. The iodine injection system utilizes a series of slender struts for iodine injection into the oxygen stream through a series of small orifices that are located within the nozzle such that the need for a diluent gas for the iodine is reduced. The use of the nozzle and iodine injection system, particularly when combined with the SOG disclosed in U.S. Patent Application Serial No. 10/453, 148, have the potential for yielding a highly efficient, high power, optically superior COIL device that is compact, scalable, can operate in space, and has good pressure recovery potential.
    • 公开了一种用于COIL的改进的喷嘴和碘注射器系统。 改进的喷嘴是具有弯曲声波线的二维最小长度的喷嘴。 碘注射系统使用一系列细长的支柱,用于通过位于喷嘴内的一系列小孔注入氧气流中,使得需要减少用于碘的稀释气体。 使用喷嘴和碘注射系统,特别是当与美国专利申请序列号10/453,148中公开的SOG组合时,具有产生紧凑的高效率,高功率,光学上优良的COIL装置的潜力, 可扩展,可在空间运行,具有良好的压力恢复潜力。
    • 3. 发明申请
    • SUPERSONIC AND SUBSONIC LASER WITH RF DISCHARGE EXCITATION
    • 具有射频放电激励的超自然和子午线激光
    • WO1997012430A1
    • 1997-04-03
    • PCT/US1996015400
    • 1996-09-26
    • KRASNOV, Alexander
    • H01S03/097
    • H01S3/0975H01S3/0979Y10S372/701
    • Disclosed is a gas laser utilizing radio frequency discharge excitation in the area of sonic or supersonic/subsonic transfer gas flow. The laser uses various types of gases and mixtures of gases as the active medium and provides for RF or UV pre-ionization of the gaseous medium before using radio frequency discharge excitation. The gas is supplied into a receiver (3a), and has downstream therefrom a supersonic nozzle (1) for acceleration of the active gaseous flow to high subsonic or supersonic speeds in order to provide intensive dynamic cooling of the active gas medium. The gas is excited using radio frequency discharge excitation in the critical area (1b) of the supersonic nozzle or downstream therefrom. The radio frequency discharge and excitation can also occur within the optical resonator region (23) which is located within the supersonic area of the nozzle. The present invention provides compact, efficient and super-powerful continuous, quasi-continuous and pulse laser systems with wavelengths from 2.03 mkm to 10.6 mkm with a high quality output beam. The present laser device may be utilized in scientific, commercial, aerospace and free space applications.
    • 公开了一种在声波或超音速/亚音速转印气体流动区域中利用射频放电激发的气体激光器。 激光使用各种类型的气体和气体混合物作为活性介质,并在使用射频放电激发之前提供气态介质的RF或UV预电离。 气体被供应到接收器(3a)中,并且在其下游具有用于将活性气体流加速到高亚音速或超音速速度的超音速喷嘴(1),以便提供活性气体介质的强烈的动态冷却。 在超音速喷嘴的临界区域(1b)或其下游的射频放电激发下,气体被激发。 射频放电和激发也可以发生在位于喷嘴的超音速区域内的光学谐振器区域(23)内。 本发明提供具有高质量输出光束的波长为2.03m至10.6mkm的紧凑,高效和超强的连续,准连续和脉冲激光系统。 本激光装置可用于科学,商业,航天和自由空间应用。