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Microwave pulse compression from a storage cavity with laser- induced switching

机译:来自存储腔的微波脉冲压缩和激光感应开关

摘要

A laser-induced switch and a multiple cavity configuration are disclosed for producing high power microwave pulses. The microwave pulses are well controlled in wavelength and timing, with a quick rise time and a variable shape and power of the pulse. In addition, a method of reducing pre-pulse leakage to a low level is disclosed.PP Microwave energy is directed coherently to one or more cavities that stores the energy in a single mode, represented as a standing wave pattern. In order to switch the stored microwave energy out of the main cavity and into the branch waveguide, a laser-actuated switch is provided for the cavity. The switch includes a laser, associated optics for delivering the beam into the main cavity, and a switching gas positioned at an antinode in the main cavity. When actuated, the switching gas ionizes, creating a plasma, which becomes reflective to the microwave energy, changing the resonance of the cavity, and as a result the stored microwave energy is abruptly switched out of the cavity. The laser may directly pre-ionize the switching gas, or it may pump an impurity in the switching gas to an energy level which switches when a pre-selected cavity field is attained.PPTiming of switching the cavities is controlled by varying the pathlength of the actuating laser beam. For example, the pathlengths may be adjusted to output a single pulse of high power, or a series of quick lower power pulses.
机译:公开了一种用于产生高功率微波脉冲的激光感应开关和多腔配置。微波脉冲的波长和定时得到了很好的控制,具有上升时间短,脉冲形状和功率可变的优点。另外,公开了一种将预脉冲泄漏减小到低水平的方法。微波能量被相干地引导到一个或多个腔体,该腔体以单一模式存储能量,以驻波模式表示。为了将所存储的微波能量从主腔切换到分支波导中,为腔设置了激光驱动的开关。该开关包括激光器,用于将光束传送到主腔中的相关光学器件以及位于主腔中波腹处的开关气体。当被驱动时,转换气体电离,产生等离子体,该等离子体对微波能量反射,改变腔体的共振,结果,所存储的微波能量突然从腔体中移出。激光可以直接将开关气体预电离,或者可以将开关气体中的杂质泵浦到能级,当达到预选腔场时,该能级就会切换。

控制开关腔的定时通过改变激励激光束的路径长度。例如,可以调节路径长度以输出高功率的单个脉冲或一系列快速的较低功率的脉冲。

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