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Uniform Field Re-entrant Cylindrical TE Cavity for Pulse Electron Paramagnetic Resonance Spectroscopy at Q-band

机译:Q频带脉冲电子顺磁共振光谱法的均匀场再参赛剂圆柱形TE腔

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摘要

Uniform field (UF) resonators create a region-of-interest, where the sample volume receives a homogeneous microwave magnetic field () excitation. However, as the region-of-interest is increased, resonator efficiency is reduced. In this work, a new class of uniform field resonators is introduced: the uniform field re-entrant cylindrical TE cavity. Here, a UF cylindrical TE cavity is designed with re-entrant fins to increase the overall resonator efficiency to match the resonator efficiency maximum of a typical cylindrical TE cavity. The new UF re-entrant cylindrical TE cavity is designed for Q-band (34 GHz) and is calculated to have the same electron paramagnetic resonance (EPR) signal intensity as a TE cavity, a 60% increase in average resonator efficiency over the sample, and has a profile that is 79.8% uniform over the entire sample volume (98% uniform over the region-of-interest). A new H-type T-junction waveguide coupler with inductive obstacles is introduced that increases the dynamic range of a movable short coupler while reducing the frequency shift by 43% during over-coupling. The resonator assembly is fabricated and tested both on the bench and with EPR experiments. This resonator provides a template to improve EPR spectroscopy for pulse experiments at high frequencies.
机译:统一场(UF)谐振器创造一个兴趣区域,其中样品体积接收均匀的微波磁场()激发。然而,随着利益区域增加,谐振器效率降低。在这项工作中,介绍了一类新的统一场谐振器:均匀的现场再参与者圆柱形TE腔。这里,UF圆柱形TE腔设计有重新参加剂翅片,以增加整体谐振器效率以匹配典型的圆柱形TE腔的谐振器效率。新的UF再参赛剂圆柱形TE腔设计用于Q波段(34 GHz),并计算成具有与TE腔的相同的电子顺磁共振(EPR)信号强度,在样品上的平均谐振器效率增加60% ,并且具有在整个样本体积上均匀79.8%的轮廓(在兴趣区域的98%均匀)。引入具有电感障碍物的新的H型T型连接波导耦合器,其增加可移动短耦合器的动态范围,同时在过耦合期间将频移降低43%。谐振器组件在工作台和EPR实验上制造和测试。该谐振器提供了一种模板,以改善高频处的脉冲实验的EPR光谱。

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