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考虑到磁共振成像应用,对由高温超导材料制成的射频线圈进行非线性表征的方法。

Method for nonlinear characterization of radio frequency coils made of high temperature superconducting material in view of magnetic resonance imaging applications.

作者信息

Girard Olivier, Ginefri Jean-Christophe, Poirier-Quinot Marie, Darrasse Luc

机构信息

U2R2M (UMR8081), University Paris-Sud, CNRS, Orsay Cedex 91405, France.

出版信息

Rev Sci Instrum. 2007 Dec;78(12):124703. doi: 10.1063/1.2825241.

Abstract

A contactless method based on reflectometry to accurately characterize an inductive radio frequency (rf) resonator even in the occurrence of a strong electrical nonlinearity is presented. Nonlinear extraction of the unloaded quality factor and resonance frequency is possible by combining an initial low-level swept-frequency calibration with high-level single-frequency measurements. The extraction protocol relies on a simple intrinsic R, L, C model and does not involve a fitting procedure according to a particular nonlinearity model. It includes a correction for strong coupling conditions between the probe and the rf coil, which allows extending the analysis over a wide range of transmitted power. Electrical modeling based on the extracted intrinsic data allows predicting the coil behavior when loaded by any kind of matching network. The method will have implications in different domains such as Magnetic Resonance (MR) applications with superconducting probe heads or analysis of rf properties in nonlinear materials. The method is demonstrated here by characterizing a high temperature superconducting (HTS) coil dedicated to MR imaging at 64 MHz. The coil consists in a multiturn spiral design that is self-resonant close to the MR frequency of interest. The Q factor and the resonance frequency are determined as a function of the actual power dissipated in the HTS coil accounting for losses occurring in the measurement system. Further characteristics of the HTS coil are considered in the present paper. The relation between the transmitted power and the magnetic field generated by the coil, which is the most relevant characteristics for MR applications, is directly accessible. The equivalent impedance of the coil under test is also expressed as a function of the total current flowing in the windings. The method could be extended to assess the fundamental properties of the nonlinear material (e.g., the London penetration depth or the critical current density) by including any pertinent model.

摘要

提出了一种基于反射测量法的非接触式方法,即使在存在强电非线性的情况下,也能准确表征电感式射频(rf)谐振器。通过将初始低电平扫频校准与高电平单频测量相结合,可以对空载品质因数和谐振频率进行非线性提取。提取协议依赖于一个简单的固有R、L、C模型,并且不涉及根据特定非线性模型的拟合过程。它包括对探头与射频线圈之间强耦合条件的校正,这使得能够在很宽的发射功率范围内进行分析。基于提取的固有数据进行电建模,可以预测当由任何类型的匹配网络加载时线圈的行为。该方法将在不同领域产生影响,例如使用超导探头的磁共振(MR)应用或非线性材料中射频特性的分析。本文通过表征一个用于64MHz磁共振成像的高温超导(HTS)线圈来演示该方法。该线圈采用多匝螺旋设计,在接近感兴趣的磁共振频率处自谐振。根据高温超导线圈中实际耗散的功率确定品质因数和谐振频率,同时考虑测量系统中发生的损耗。本文还考虑了高温超导线圈的其他特性。对于磁共振应用来说,最相关的特性是发射功率与线圈产生的磁场之间的关系,这是可以直接获得的。被测线圈的等效阻抗也表示为绕组中总电流的函数。通过纳入任何相关模型,该方法可以扩展到评估非线性材料的基本特性(例如伦敦穿透深度或临界电流密度)。

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