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ULTRA-COMPACT ACCELERATOR TECHNOLOGIES FOR APPLICATION IN NUCLEAR TECHNIQUES*

机译:用于核技术的超紧凑型加速器技术*

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We report on compact accelerator technology development for potential use as a pulsed neutron source quantitative post verifier. The technology is derived from our on-going compact accelerator technology development program for radiography under the US Department of Energy and for a clinic sized compact proton therapy Systems under an industry sponsored Cooperative Research and Development Agreement. The accelerator technique relies on the synchronous discharge of a prompt pulse generating stacked transmission line structure with the beam transit. The goal of this technology is to achieve ~10 MV/m gradients for 10s of nanoseconds pulses and ~100 MV/m gradients for ~1 ns Systems. As a post verifier for supplementing existing x-ray equipment, this System can remain in a charged, stand-by State with little or no energy consumption. We describe the progress of our overall component development effort with the multilayer dielectric wall insulators (i.e., the accelerator wall), compact power supply technology, kHz repetition-rate surface flashover ion sources, and the prompt pulse generation system consisting of wide-bandgap Switches and high Performance dielectric materials.
机译:我们对小型加速器技术的发展为脉冲中子源定量验证后潜在的使用报告。该技术是从我们正在进行的小型加速器技术开发计划派生的下美国能源署射线照相和诊所大小的行业下紧凑型质子治疗系统资助的合作研究和开发协议。加速器技术依赖于与梁过境提示脉冲发生堆叠传输线结构的同步放电。该技术的目标是实现〜10 MV /对纳秒脉冲的10S米梯度和〜100兆伏/米的梯度为约1 ns系统。作为一个后验证用于补充现有的X射线设备,该系统可以保持在充电,待机状态,很少或没有能量消耗。我们描述与多层电介质壁绝缘体(即,加速器壁),紧凑型电源技术,千赫重复率沿面闪络离子源整体组件的开发工作的进展情况,并及时脉冲产生系统,包括宽带隙开关和高性能介电材料。

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