Comparison of Theoretically Simulated and Experimental Scattering Matrix Parameters in a Five Port Transmission Line Frequency Multiplexer for Solid State Nuclear Magnetic Resonance Techniques

J. Frydel, D. Pienkowski, J. Dobrowolski, G. Buntkowsky
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Abstract

Radio frequency (abbr.: RF) techniques constitute a very useful tool in studies on biologic and chemical systems, therefore it is employed in Nuclear Magnetic Resonance (abbr.: NMR) techniques. In order to make use of it, there is a need of designing and modelling of NMR probes. These NMR probes exemplify single-or multi-port radio frequency multiplexers. The NMR probe undergoing analysis is comprised of an impedance tuned and matched coaxial transmission line network terminated with a single sample coil, and multiple RF input-output connections adapted to 50 Ohm standard by means of tuning and matching capacitors. The comparison of scattering matrix elements S(i,i) (reflection coefficients) of both theoretically simulated and constructed a five channel transmission line frequency multiplexer probe of J.Schaefer & R.McKay type is presented. The S-matrix transmission coefficients: S(i,j), ine j, are presented for a "real" multiplexer only, due to the importance of the real NMR probe performance. So called calibration spectra obtained with the multiplexer probe are shown as well.
固体核磁共振技术中五端口传输线倍频器散射矩阵参数的理论模拟与实验比较
射频技术在生物和化学系统的研究中是一个非常有用的工具,因此它被应用于核磁共振技术中。为了利用它,需要对核磁共振探针进行设计和建模。这些核磁共振探头是单端口或多端口射频复用器的例子。正在进行分析的核磁共振探针由一个阻抗调谐和匹配的同轴传输线网络组成,该传输线网络端接一个样品线圈,以及通过调谐和匹配电容器适应50欧姆标准的多个射频输入输出连接。比较了J.Schaefer & R.McKay型五通道传输线倍频探头的散射矩阵元素S(i,i)(反射系数)。S矩阵传输系数:S(i,j), linej,由于实际核磁共振探头性能的重要性,仅为“实际”多路复用器提供。也显示了用多路复用器探针获得的所谓校准光谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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