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New Feedthrough Insulator of the Compact Tandem-Accelerator with Vacuum Insulation

机译:具有真空绝缘的紧凑型串联加速器的新馈通绝缘子

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The source of epithermal neutrons based on the tandem accelerator with vacuum insulation and a lithium target was created at the Budker Institute of Nuclear Physics for the development of the technique of boron-neutron capture therapy of malignant tumors (BNCT). A stationary proton beam with energy of 2 MeV was obtained, neutrons were generated, and studies of the effect of neutron radiation on cell cultures and laboratory animals were carried out. An increase in the proton energy to 2.3 MeV and equipping the beam shaping assembly will make it possible to obtain a neutron flux that satisfies the BNCT requirements the most. The report describes and discusses a new feedthrough insulator of the accelerator at the voltage of 1.15 MV, characterized by a doubled height of single insulator rings, the absence of a resistive divider inside the insulator. The proposed changes will improve the reliability of the accelerator, provide greater stability of the accelerating electric field from the influence of dark currents in accelerating gaps and reduce the height of the facility. The new feedthrough insulator is manufactured and installed in the accelerator. The voltage of 1.26 MV was received. The report presents the results of these experiments using the new feedthrough insulator.
机译:超热中子的基于与真空绝热和锂目标串列式加速器源在核物理的Budker研究所创建恶性肿瘤(BNCT)的硼中子俘获疗法的技术的发展。获得了具有2mEV的能量的固定质子梁,产生中子,进行中子辐射对细胞培养物和实验动物动物的影响。质子能量增加到2.3meV并装配光束整形组件将使可以获得最满足BNCT要求的中子磁通量。该报告描述并讨论了加速器的新馈通绝缘体,其电压为1.15 mV,其特征在于单一绝缘体环的一倍,不存在绝缘体内的电阻分压器。所提出的改变将提高加速器的可靠性,从暗电流的影响加速间隙并减小设施的高度来提供更大的加速电场的稳定性。新的馈通绝缘体是制造并安装在加速器中的。收到1.26mV的电压。该报告使用新的馈通绝缘体介绍了这些实验的结果。

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