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首页> 外文期刊>Review of Scientific Instruments >Opposed coil magnet calculations for large sample and unilateral nuclear‐magnetic resonance
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Opposed coil magnet calculations for large sample and unilateral nuclear‐magnetic resonance

机译:大样本和单边核磁共振的相反线圈磁体计算

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A magnet configuration has been devised, consisting of two nested coaxial coils with the current in the inner coil circulating in an opposite sense from that in the outer coil. The magnetic field generated by such an opposed pair exhibits a small region of homogeneity outside of the magnet itself, creating the possibility of constructing a unilateral nuclear‐magnetic‐resonance device capable of examining an object from only one side. Calculations on one special case, the inside‐out Helmholtz configuration, indicate a volume of 10 cm3 with homogeneity of ±1% for a coil of outer radius 10 cm, and 0.1 cm3 with 100‐ppm homogeneity. A second special case, consisting of two sets of opposed solenoids arranged in a quasi‐Helmholtz manner, offers homogeneity comparable to a conventional Helmholtz pair of similar diameter but with an increase in separation of as much as a factor of 2.
机译:已经设计出一种磁体结构,该磁体结构由两个嵌套的同轴线圈组成,内部线圈中的电流与外部线圈中的电流相反。这样一对相对的对产生的磁场在磁体本身的外部呈现出一个小的均匀区域,从而有可能构建一种单侧核磁共振设备,该设备只能从一侧检查物体。在一种特殊情况下(由内而外的亥姆霍兹构造)的计算结果表明,外径为10 cm的线圈的体积为10 cm3,均匀性为±1%,而均匀度为100-ppm的体积为0.1 cm3。第二种特殊情况是由两组以准亥姆霍兹(Helmholtz)方式布置的相对螺线管组成,其均质性可与类似直径的传统亥姆霍兹对媲美,但相距增加了2倍。

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