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Development of a high current movin Arc gas discharge switch for the FAIR magnetic horn

机译:开发用于FAIR电磁喇叭的高电流Movin Arc气体放电开关

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The planed Facility for Antiproton and Ion Research (FAIR) is a new international accelerator laboratory at the GSI in Darmstadt, Germany. One research topic at this facility is aimed to protons and anti protons colliding experiments. After generation of these antiprotons strong magnetic fields are necessary to focus the antiprotons. To achieve this high magnetic fields a magnetic horn will be used. To generate for this application the necessary high magnetic field the designed stripline of the pulse forming network (PFN) has to handle a peak current of 400kA with a pulse length of 20µs. Currently the only possibility to handle this high current is the use of mercury filled Ignitrons. The plasma physics working group at the University of Frankfurt develops a mercury free switch, which is able to replace the Ignitrons in the PFN of the magnetic horn. This contribution shall give an overview about the development of a gas discharge switch with minimized local electrode erosion. The experimental setup of the switch consists of coaxial electrodes, similar to the geometry used for plasma focus devices. The main discharge between the coaxial electrode system will be initiated by a trigger predischarge. After the ignition of the main discharge between the coaxial electrode system and due to the interaction of the induced radial magnetic field with the plasma, the gas discharge will be accelerated to the open end of the coaxial electrode system
机译:计划中的反质子和离子研究设施(FAIR)是位于德国达姆施塔特GSI的新国际加速器实验室。该设施的一个研究主题是质子和反质子碰撞实验。在产生这些反质子之后,强磁场对于聚焦反质子是必要的。为了获得这种高磁场,将使用磁喇叭。为了为此应用生成必要的强磁场,脉冲形成网络(PFN)的带状线必须处理400kA的峰值电流,脉冲长度为20µs。当前,处理这种大电流的唯一可能性是使用充满汞的伊硝酮。法兰克福大学的等离子体物理学工作组开发了一种无汞开关,该开关可以代替磁喇叭PFN中的Ignitrons。该贡献应概述气体放电开关的开发,并使局部电极腐蚀最小。开关的实验装置由同轴电极组成,类似于用于等离子体聚焦设备的几何形状。同轴电极系统之间的主放电将由触发预放电启动。在同轴电极系统之间的主放电点火后,由于感应的径向磁场与等离子体的相互作用,气体放电将加速到同轴电极系统的开口端

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