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Effects of modulation schemes on the performance of directlycoupled high-Tc dc SQUID magnetometers

机译:调制方案对直接耦合高Tc dc SQUID磁力计性能的影响

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We have designed and fabricated the directly coupled YBa2 Cu3O7-δ dc SQUID magnetometers with two different modulation schemes to study the crosstalk effect in the on-chip multi-channel magnetometers. In one of the modulation schemes, the modulation current was directly injected into the SQUID body and the pick-up coil. The modulation efficiency was changed by the ratio of the modulation current flowing through the SQUID to the pick-up coil. In the other schemes, the modulation flux is mutually coupled through an external coil, and the modulation efficiency was changed by the mutual inductance of the external coil and the magnetometer. The results show that the modulation efficiency was varied when the value of self-inductance or the mutual inductance of SQUIDs change. Usually, lower modulation efficiency results in a higher crosstalk. The performance of magnetometers was also influenced by different modulation schemes. Their noise spectrum was compared as evidence
机译:我们设计和制造了具有两种不同调制方案的直接耦合YBa2Cu3O7-δdc SQUID磁力计,以研究片上多通道磁力计中的串扰效应。在一种调制方案中,将调制电流直接注入SQUID主体和拾取线圈中。调制效率由流过SQUID到拾取线圈的调制电流之比改变。在其他方案中,调制磁通通过外部线圈相互耦合,并且调制效率因外部线圈和磁力计的互感而改变。结果表明,当SQUID的自感或互感值改变时,调制效率也会发生变化。通常,较低的调制效率会导致较高的串扰。磁力计的性能还受到不同调制方案的影响。比较了他们的噪声频谱作为证据

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