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Transformer Coupling and Its Modelling for the Flux-Ramp Modulation of rf-SQUIDs

机译:RF-Squids磁通斜坡调制的变压器耦合及其建模

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摘要

Microwave SQUID (Superconducting QUantum Interference Device) multiplexing is a suitable technique for reading a large number of detector channels, using only a few connecting lines. In the HOLMESexperiment, this is based on inductively coupled rf-SQUIDs fed by TES (Transition Edge Sensors). Operation of the whole rf-SQUID chain is achieved with a single transmission line, by means of the recently introduced flux-ramp modulation technique—a sawtooth signal which allows signal reconstruction while operating the rf-SQUIDs in an open loop condition. Due to the crucial role of the sawtooth signal, it is very important that it does not suffer from ground-loop disturbances and electromagnetic interference (EMI). Introducing a transformer between the sawtooth source and the SQUID is very effective in suppressing disturbances. The sawtooth signal has both slow and fast components, and the frequency can vary between a few kHz up to a MHz, depending on the TES signal and SQUID characteristics. A transformer able to handle such a broad range of conditions must have very stringent characteristics and needs to be custom designed. Our solution exploits standard commercial and inexpensive transformers for LAN networks, stacked in a user-selectable number, to better fit the bandwidth requirements. A model that allows handling of the low- and high-frequency operating range has been developed.
机译:微波鱿鱼(超导量子干扰装置)复用是一种用于读取大量探测器通道的合适技术,仅使用少数连接线。在Holmesexperiment中,这是基于由TES(过渡边缘传感器)馈送的电感耦合的RF鱿鱼。通过最近引入的磁通 - 斜坡调制技术 - 通过最近引入的磁通线来实现整个RF鱿鱼链的操作 - 一种锯齿信号,其允许在开环状态下操作RF鱿鱼的同时进行信号重建。由于锯齿信号的关键作用,非常重要的是,它不会遭受地环干扰和电磁干扰(EMI)。在锯齿源和鱿鱼之间引入变压器在抑制干扰方面非常有效。锯齿信号具有慢速和快速的组件,频率可以在几kHz到MHz之间变化,具体取决于TES信号和鱿鱼特性。能够处理这种广泛条件的变压器必须具有非常严格的特性,并且需要定制设计。我们的解决方案利用LAN网络的标准商业和廉价的变压器,堆放在用户可选号码中,以更好地符合带宽要求。已经开发了一种允许处理低频和高频操作范围的模型。

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