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首页> 外文期刊>Applied Physics Letters >Frequency division multiplexing readout of 60 low-noise transition-edge sensor bolometers
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Frequency division multiplexing readout of 60 low-noise transition-edge sensor bolometers

机译:60低噪声过渡边缘传感器钻孔仪的频分复用读数

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摘要

We demonstrate multiplexing readout of 60 transition edge sensor (TES) bolometers operating at 90 mK using a frequency division multiplexing readout chain with bias frequencies ranging from 1 to 3.5 MHz and with a typical frequency spacing of 32 kHz. The readout chain starts with a two-stage SQUID amplifier and has a noise level of 9.5 pA/Hz~(1/2). We compare current-voltage curves and noise spectra of TESs measured in a single-pixel mode and in a multiplexing mode. We also map the noise equivalent power (NEP) and the saturation power of the bolometers in both modes, where there are 43 pixels that do not show more than 10% difference in NEP and 5% in saturation power when measured in single pixel and multiplex modes. We have read out a TES with an NEP of 0.45 aW/ Hz~(1/2) in the multiplexing-mode, which demonstrates the capability of reading out ultra-low noise TES bolometer arrays for space applications.
机译:我们展示了60个过渡边缘传感器(TES)钻孔计的多路复用读数,使用频分复用读数链在90 mk下工作,偏置频率范围为1至3.5MHz,典型的频率间距为32 kHz。 读出链以两级鱿鱼放大器开始,噪音水平为9.5 pa / hz〜(1/2)。 我们比较在单像素模式下和多路复用模式下测量TES的电流电压曲线和噪声光谱。 我们还在两种模式下映射噪声等效功率(NEP)和钻孔计的饱和功率,其中43个像素在单像素和多个像素中测量时,在饱和功率时不会显示出超过10%的差异和5% 模式。 我们已经在多路复用模式下读出了具有0.45 AW / Hz〜(1/2)的NEP的TES,这证明了读出超低噪声TES钻头阵列的空间应用的能力。

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  • 来源
    《Applied Physics Letters》 |2021年第18期|182602.1-182602.6|共6页
  • 作者单位

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands Kapteyn Astronomical Institute University of Croningen 9747 AD Groningen The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands Kapteyn Astronomical Institute University of Croningen 9747 AD Groningen The Netherlands;

    SRON Netherlands Institute for Space Research Landleven 12 9747 AD Groningen The Netherlands and SRON Netherlands Institute for Space Research Niels Bohrweg 4 2333 CA Leiden The Netherlands Optics Croup Department of Imaging Physics Delft University of Technology 2628 C3 Delft The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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