Strangeway Robert A, Hyde James S, Camenisch Theodore G, Sidabras Jason W, Mett Richard R, Anderson James R, Ratke Joseph J, Subczynski Witold K
National Biomedical EPR Center, Department of Biophysics, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI, 53226, USA.
Department of Electrical Engineering and Computer Science, Milwaukee School of Engineering, 1025 North Broadway, Milwaukee, WI, 53202, USA.
Cell Biochem Biophys. 2017 Dec;75(3-4):259-273. doi: 10.1007/s12013-017-0804-7. Epub 2017 May 29.
A multi-arm W-band (94 GHz) electron paramagnetic resonance spectrometer that incorporates a loop-gap resonator with high bandwidth is described. A goal of the instrumental development is detection of free induction decay following rapid sweep of the microwave frequency across the spectrum of a nitroxide radical at physiological temperature, which is expected to lead to a capability for Fourier transform electron paramagnetic resonance. Progress toward this goal is a theme of the paper. Because of the low Q-value of the loop-gap resonator, it was found necessary to develop a new type of automatic frequency control, which is described in an appendix. Path-length equalization, which is accomplished at the intermediate frequency of 59 GHz, is analyzed. A directional coupler is favored for separation of incident and reflected power between the bridge and the loop-gap resonator. Microwave leakage of this coupler is analyzed. An oversize waveguide with hyperbolic-cosine tapers couples the bridge to the loop-gap resonator, which results in reduced microwave power and signal loss. Benchmark sensitivity data are provided. The most extensive application of the instrument to date has been the measurement of T values using pulse saturation recovery. An overview of that work is provided.
本文描述了一种多臂W波段(94 GHz)电子顺磁共振光谱仪,该光谱仪集成了具有高带宽的环形间隙谐振器。仪器开发的一个目标是在生理温度下,当微波频率快速扫过氮氧化物自由基的光谱时,检测自由感应衰减,这有望实现傅里叶变换电子顺磁共振的能力。朝着这个目标取得的进展是本文的一个主题。由于环形间隙谐振器的品质因数较低,因此发现有必要开发一种新型的自动频率控制,这在附录中有所描述。分析了在59 GHz中频实现的光程均衡。定向耦合器有利于分离桥路和环形间隙谐振器之间的入射功率和反射功率。分析了该耦合器的微波泄漏。带有双曲余弦渐变的超大尺寸波导将桥路与环形间隙谐振器耦合,从而降低了微波功率和信号损耗。提供了基准灵敏度数据。该仪器迄今为止最广泛的应用是使用脉冲饱和恢复测量T值。提供了该项工作的概述。