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Ion beams from laser‐generated plasmas

机译:来自激光连字符产生的等离子体的离子束

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Space‐charge‐limited heavy ion beams have been produced by utilizing the plasma blowoffs generated by 20‐MW bursts of 1.06‐mgr; radiation from an activeQ‐switched Nd:Yag laser. Laser power densities near a moment 1011W/cm2on solid targets generate thermalized plasma plumes which drift to a 15‐kV gridded extraction gap where the ions are extracted, accelerated, and subsequently electrostatically focused. The spatially defined ion beams are then magnetically analyzed to determine the charge‐state content in the beams. Results are presented for the more significant amounts of charge statesZ?5 contained in the beams formed from carbon, aluminum, copper, and lead targets. The extraction and acceleration technique preserves time‐of‐flight (TOF) information in the plasma drift region, which allows plasma ion temperatures and mass flow velocities to be determined from the Maxwellian ion curve TOF shapes for the individual charge species.
机译:空间&连字符;电荷&连字符;有限的重离子束是通过利用来自主动Q&连字符;开关Nd:Yag激光器的20&连字符;MW脉冲1.06&连字符;&mgr;辐射产生的等离子体吹发产生的。在1011W/cm2固体目标上,激光功率密度接近瞬间会产生热等离子体羽流,这些等离子体羽流漂移到15&hyph;kV网格化提取间隙,离子被提取、加速,随后进行静电聚焦。然后对空间定义的离子束进行磁分析,以确定离子束中的电荷和连字符状态含量。给出了由碳、铝、铜和铅靶形成的光束中所含的更显着的电荷态Z?5的结果。提取和加速技术在等离子体漂移区域保留了连字符(TOF)时间(TOF)信息,从而可以根据麦克斯韦离子曲线TOF形状确定单个电荷种类的等离子体离子温度和质量流速度。

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