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首页> 外文期刊>Journal of Low Temperature Physics >Optimizing Feedhorn-Coupled TES Polarimeters for Balloon and Space-Based CMB Observations
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Optimizing Feedhorn-Coupled TES Polarimeters for Balloon and Space-Based CMB Observations

机译:优化用于球囊和空基CMB观测的Feedhorn耦合TES旋光仪

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Maximizing the sensitivity of balloon-based and space-based observations of the cosmic microwave background (CMB) requires detectors with substantially lower saturation power and background noise than ground-based observations, because of reduced atmospheric loading and lower photon noise. We have fabricated and tested prototype transition-edge sensor (TES) bolometers that have architecture identical to that used in feedhorn-coupled TES polarimeter arrays developed for ground-based CMB observations, but have saturation power appropriate for balloon-based or space-based observations (0.5 pW-7 pW). The operating resistance of these bolometers (approx3 m(OMEGA)) is appropriate for readout with time-division or gigahertz frequency-division SQUID multiplexers. Dark bolometer measurements show that the noise levels are near the expected thermal-fluctuation-noise background (<10~(-17) W/Hz~(1/2)), that the thermal response times are faster than the observation requirements, and that low-frequency 1/f noise can be strongly suppressed to < 10 mHz by pair differencing. We report on the performance of the prototype devices and progress towards optimizing them for balloon-based and spaced-based observations.
机译:要使宇宙微波背景(CMB)的基于气球和基于空间的观测的灵敏度最大化,要求探测器具有比基于地面的观测低得多的饱和功率和背景噪声,这是因为减少了大气负荷并降低了光子噪声。我们已经制造并测试了原型的过渡边缘传感器(TES)辐射热测量仪,其结构与用于地面CMB观测而开发的馈电耦合TES偏振计阵列相同,但具有适用于基于气球或基于太空的观测的饱和功率(0.5 pW-7 pW)。这些辐射热计的工作电阻(约3 m(OMEGA))适用于时分或千兆赫兹频分SQUID多路复用器的读数。暗辐射热计的测量表明噪声水平接近预期的热波动噪声背景(<10〜(-17)W / Hz〜(1/2)),热响应时间快于观测要求,并且通过对差分可以将低频1 / f噪声强烈抑制到<10 mHz。我们报告原型设备的性能,并朝着基于气球和基于间隔的观察优化它们的进度。

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