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A signal input coil made of superconducting thin film for improved signal-to-noise ratio in a high-T_c SQUID-based ultra-low field nuclear magnetic resonance system

机译:在基于T_c SQUID的超低场核磁共振系统中,由超导薄膜制成的信号输入线圈可改善信噪比

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摘要

Resonant coupling schemes are commonly used in SQUID-based ultra-low field (ULF) nuclear magnetic resonance (NMR) systems to couple the spin relaxation signals from samples to the SQUID. Generally, in NMR systems, a resonant coupling scheme is composed of two solenoid coils which are made of enamel insulated wires and a capacitor connected in series. In this work, we tried to replace the metal solenoid input coil with a planar high-T_c superconducting spiral coil to improve the signal-to-noise ratio (SNR) of the ULF NMR signal. A measurement of the free induction decay signal of water protons was performed to demonstrate the improved performance of the system. This improvement is due to the fact that the planar superconducting spiral coil possesses a higher mutual inductance with the SQUID. Therefore, it is a promising way to enhance the SNR of high-T_c SQUID-based ULF NMR/MRI systems.
机译:共振耦合方案通常用于基于SQUID的超低场(ULF)核磁共振(NMR)系统中,以将自旋弛豫信号从样本耦合到SQUID。通常,在NMR系统中,共振耦合方案由两个电磁线圈组成,这两个电磁线圈由漆包线和串联连接的电容器制成。在这项工作中,我们尝试将金属螺线管输入线圈替换为平面高T_c超导螺旋线圈,以提高ULF NMR信号的信噪比(SNR)。对水质子的自由感应衰变信号进行了测量,以证明系统的性能得到了改善。该改进归因于以下事实:平面超导螺旋线圈与SQUID具有更高的互感。因此,增强基于高T_c SQUID的ULF NMR / MRI系统的信噪比是一种很有前途的方法。

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