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首页> 外文期刊>Journal of Low Temperature Physics >Lithographed Superconducting Resonator Development for Next-Generation Frequency Multiplexing Readout of Transition-Edge Sensors
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Lithographed Superconducting Resonator Development for Next-Generation Frequency Multiplexing Readout of Transition-Edge Sensors

机译:过渡边缘传感器的下一代频率复用读数的光刻超导谐振器开发

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Ground-based cosmic microwave background (CMB) experiments are undergoing a period of exponential growth. Current experiments are observing with 1000–10,000 detectors, and the next-generation experiment (CMB stage 4) is proposing to deploy approximately 500,000 detectors. This order of magnitude increase in detector count will require a new approach for readout electronics. We have developed superconducting resonators for next-generation frequency-domain multiplexing (fMUX) readout architecture. Our goal is to reduce the physical size of resonators, such that resonators and detectors can eventually be integrated on a single wafer. To reduce the size of these resonators, we have designed spiral inductors and interdigitated capacitors that resonate around 10–100?MHz, an order of magnitude higher frequency compared to current fMUX readout systems. The higher frequency leads to a wider bandwidth and would enable higher multiplexing factor than the current $$sim $$ ~ ?50 detectors per readout channel. We will report on the simulation, fabrication method, characterization technique, and measurement of quality factor of these resonators.
机译:基于地基宇宙微波背景(CMB)实验正在进行一段指数增长。目前的实验用1000-10,000个探测器观察,下一代实验(CMB阶段4)建议部署约500,000个探测器。探测器计数增加的级别增加将需要一种新的读出电子设备方法。我们开发了用于下一代频域多路复用(FMUX)读数架构的超导谐振器。我们的目标是降低谐振器的物理尺寸,使得谐振器和探测器最终可以集成在单个晶片上。为了减小这些谐振器的尺寸,我们设计了与当前FMUX读数系统相比,设计了螺旋电感器和谐振左右10-100ΩMHz,幅度较高的频率级。较高频率导致更宽的带宽,并且能够比当前$$ SIM $$〜50检测器实现更高的复用因子。我们将报告这些谐振器的质量因子的模拟,制造方法,表征技术和测量。

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