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Conceptual design study of a novel gyrotron for NMR/DNP spectroscopy

机译:用于NMR / DNP光谱的新型回旋管的概念设计研究

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摘要

In this paper we present some initial results from a conceptual design study focused on the development of a novel frequency tunable gyrotron for nuclear magnetic resonance (NMR) spectroscopy with signal enhancement based on the utilization of high field radiation and dynamic nuclear polarization (DNP) technique. The first variants of both the electron optical system and the resonant cavity which have been designed aiming continuous frequency tunability in a broad frequency band are presented and discussed. The selected method for frequency tunability is based on the excitation of higher order axial modes and smooth transition between them. It was selected after a critical examination of the known theoretical and practical results related to the frequency control in gyrotrons. It is believed that the current conceptual design is an appropriate basis for development of the next (optimized) design which will include also a detailed design of other components (mode converter, output window etc.) and magnetic circuit (superconducting magnet and supplementary solenoids) as well as for the overall mechanical design and fabrication of the prospective gyrotron.
机译:在本文中,我们提供了一些概念设计研究的一些初步结果,这些研究的重点是基于高场辐射和动态核极化(DNP)技术开发具有信号增强功能的新型核磁共振(NMR)频率可调回旋管。介绍并讨论了电子光学系统和谐振腔的第一个变体,这些变体旨在在宽频带内实现连续的频率可调性。频率可调谐性的选定方法是基于高阶轴向模式的激励以及它们之间的平滑过渡。它是在对与回旋管中的频率控制有关的已知理论和实践结果进行严格审查后才选择的。可以认为,当前的概念设计是开发下一个(优化的)设计的适当基础,该设计还将包括其他组件(模式转换器,输出窗口等)和磁路(超导磁体和辅助螺线管)的详细设计以及预期回旋管的整体机械设计和制造。

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