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A broadband superconducting detector suitable for use in large arrays

机译:适用于大型阵列的宽带超导探测器

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Cryogenic detectors are extremely sensitive and have a wide variety of applications (particularly in astronomy), but are difficult to integrate into large arrays like a modern CCD (charge-coupled device) camera. As current detectors of the cosmic microwave background (CMB) already have sensitivities comparable to the noise arising from the random arrival of CMB photons, the further gains in sensitivity needed to probe the very early Universe will have to arise from large arrays. A similar situation is encountered at other wavelengths. Single-pixel X-ray detectors now have a resolving power of ΔE < 5 eV for single 6-keV photons, and future X-ray astronomy missions anticipate the need for 1,000-pixel arrays. Here we report the demonstration of a superconducting detector that is easily fabricated and can readily be incorporated into such an array. Its sensitivity is already within an order of magnitude of that needed for CMB observations, and its energy resolution is similarly close to the targets required for future X-ray astronomy missions.
机译:低温探测器非常灵敏,具有广泛的应用(尤其是在天文学中),但是很难像现代CCD(电荷耦合器件)相机那样集成到大型阵列中。由于宇宙微波背景(CMB)的电流检测器已经具有与CMB光子随机到达所产生的噪声相当的灵敏度,因此探测大型宇宙将必须进一步提高探测极早期宇宙所需的灵敏度。在其他波长处也会遇到类似情况。现在,单像素X射线探测器对单个6 keV光子的分辨能力为ΔE<5 eV,并且未来的X射线天文学任务预计需要1,000像素阵列。在这里,我们报告了一种超导检测器的演示,该检测器易于制造并且可以很容易地合并到这种阵列中。它的灵敏度已经在CMB观测所需的数量级之内,并且其能量分辨率也接近未来X射线天文学任务所需的目标。

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