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用于94GHz水性样品电子顺磁共振的均匀场环形间隙谐振器和矩形TE模式

Uniform field loop-gap resonator and rectangular TE for aqueous sample EPR at 94GHz.

作者信息

Sidabras Jason W, Sarna Tadeusz, Mett Richard R, Hyde James S

机构信息

Max Planck for Chemical Energy Conversion, Department of Biophysical Chemistry, Mülheim an der Ruhr 45468, Germany; Medical College of Wisconsin, Department of Biophysics, Milwaukee, WI 53226-0509, United States.

Department of Biophysics, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Kraków, Poland.

出版信息

J Magn Reson. 2017 Sep;282:129-135. doi: 10.1016/j.jmr.2017.08.001. Epub 2017 Aug 5.

Abstract

In this work we present the design and implementation of two uniform-field resonators: a seven-loop-six-gap loop-gap resonator (LGR) and a rectangular TE cavity resonator. Each resonator has uniform-field-producing end-sections. These resonators have been designed for electron paramagnetic resonance (EPR) of aqueous samples at 94GHz. The LGR geometry employs low-loss Rexolite end-sections to improve the field homogeneity over a 3mm sample region-of-interest from near-cosine distribution to 90% uniform. The LGR was designed to accommodate large degassable Polytetrafluorethylen (PTFE) tubes (0.81mm O.D.; 0.25mm I.D.) for aqueous samples. Additionally, field modulation slots are designed for uniform 100kHz field modulation incident at the sample. Experiments using a point sample of lithium phthalocyanine (LiPC) were performed to measure both the uniformity of the microwave magnetic field and 100kHz field modulation, and confirm simulations. The rectangular TE cavity resonator employs over-sized end-sections with sample shielding to provide an 87% uniform field for a 0.1×2×6mm sample geometry. An evanescent slotted window was designed for light access to irradiate 90% of the sample volume. A novel dual-slot iris was used to minimize microwave magnetic field perturbations and maintain cross-sectional uniformity. Practical EPR experiments using the application of light irradiated rose bengal (4,5,6,7-tetrachloro-2',4',5',7'-tetraiodofluorescein) were performed in the TE cavity. The implementation of these geometries providing a practical designs for uniform field resonators that continue resonator advancements towards quantitative EPR spectroscopy.

摘要

在这项工作中,我们展示了两种均匀场谐振器的设计与实现:一种七环六间隙环形间隙谐振器(LGR)和一个矩形TE腔谐振器。每个谐振器都有产生均匀场的端部。这些谐振器是为94GHz下水溶液样品的电子顺磁共振(EPR)设计的。LGR的几何结构采用低损耗的Rexolite端部,以将3mm感兴趣样品区域内的场均匀性从近余弦分布提高到90%的均匀度。LGR被设计用于容纳用于水溶液样品的大型可除气聚四氟乙烯(PTFE)管(外径0.81mm;内径0.25mm)。此外,场调制槽被设计用于在样品处入射均匀的100kHz场调制。使用酞菁锂(LiPC)点样品进行实验,以测量微波磁场的均匀性和100kHz场调制,并验证模拟结果。矩形TE腔谐振器采用带有样品屏蔽的超大端部,为0.1×2×6mm的样品几何形状提供87%均匀度的场。设计了一个消逝开槽窗口,以便光线能够照射到90%的样品体积。使用一种新型双槽虹膜来最小化微波磁场扰动并保持横截面均匀性。在TE腔中使用光照射孟加拉玫瑰红(4,5,6,7-四氯-2',4',(5'),7'-四碘荧光素)进行了实际的EPR实验。这些几何结构的实现为均匀场谐振器提供了实用设计,推动谐振器朝着定量EPR光谱学方向不断发展。

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