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Improvement of the gating efficiency of gated image intensifier tubes

机译:选通图像增强管选通效率的提高

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Abstract: mage intensifier tubes (IITs) with microchannel-plate (MCP) may be used for the diagnostics of very fast transient phenomena such as predischarge development in gases. The gating pulse is usually applied to the cathode of the IIT while the voltages across the MCP and the anode remain constant. Due to the transparency of the cathode, which is in the range of 10$+$MIN@5$/, and the low emission energy of the MCP-material, which can be below 2 eV, a small portion of radiation is able to pass the cathode during its non-gated state and release electrons directly from the MCP-material. These electrons are amplified by the MCP which may result in an aliased picture. Therefore the amount of radiation which can be applied to the IIT during its non-gated state is limited. In order to increase the gating efficiency of the IIT combined gating of the cathode and the MCP is used. This allows us to take pictures from predischarge phenomena with very low luminosity followed by the intensive radiation of the high current arc. Similar problems exist during investigations of the recovery phase of high current switches. In addition gating of the MCP reduces all kinds of noise caused by the MCP during the relatively long integration time of the video- camera usually connected to the IIT. A single frame high speed camera with gated photocathode, gated MCP, and variable exposure times between 700 ps and 5 ns has been developed. The transparency could be decreased from 1E - 5 of less than 1E - 13. !3
机译:摘要:具有微通道板(MCP)的法师增强管(IIT)可用于诊断非常快速的瞬态现象,例如气体中的预放电。门控脉冲通常施加在IIT的阴极上,而MCP和阳极之间的电压保持恒定。由于阴极的透明度在10 $ + MINMIN @ 5 $ /范围内,并且MCP材料的低发射能量可以低于2 eV,因此一小部分辐射能够在非门控状态下通过阴极,并直接从MCP材料释放电子。这些电子被MCP放大,可能会产生混叠图像。因此,限制了在IIT非门控状态期间可以施加到IIT的辐射量。为了提高IIT的门控效率,使用了阴极和MCP的组合门控。这使我们能够以极低的亮度从预放电现象中拍摄照片,然后再对大电流电弧进行强辐射。在研究大电流开关的恢复阶段期间,存在类似的问题。此外,在通常连接至IIT的摄像机的相对较长的集成时间内,MCP的门控可减少由MCP引起的各种噪声。已开发出具有门控光电阴极,门控MCP和700 ps至5 ns可变曝光时间的单帧高速相机。透明度可以从1E-5降低到小于1E-13。!3

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