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Ultrastable millimeter-wave kinetic inductance detectors

机译:超稳定毫米波动电感检测器

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We demonstrate microwave kinetic inductance detectors (MKIDs) whose sensitivity is limited by photon noise at signal frequencies as low as 50 mHz. The subhertz part of the detection spectrum is important for contemporary millimeter-wave science, yet photon noise below 1 Hz in MKIDs has not previously been unambiguously demonstrated. These feedhorn-coupled detectors are sensitive over a 40% fractional bandwidth centered on lambda = 2 mm, are dual-polarization-sensitive, and consist of lumped-element superconducting resonators fabricated from a hybrid of stoichiometric TiN and Al films together with an amorphous-Si passivation layer. When observing a 7 K, 3.8 pW thermal load and employing no signal modulation scheme, the measured noise spectrum is white down to 50 mHz and has an amplitude consistent with photon noise. These results have implications for the development of large-format, polarization-sensitive, millimeter-wave imagers.
机译:我们演示了微波动电感检测器(MKID),其灵敏度受到信号频率低至50 mHz的光子噪声的限制。检测频谱的亚赫兹部分对当代毫米波科学很重要,但是以前尚未明确证明MKID中低于1 Hz的光子噪声。这些馈源耦合探测器在以λ= 2 mm为中心的40%分数带宽上敏感,是双极化敏感的,并且由化学计量的TiN和Al薄膜以及非晶态的杂化材料制成的集总元件超导谐振器组成。硅钝化层。当观察到7 K,3.8 pW的热负载并且不采用信号调制方案时,测得的噪声频谱在低至50 mHz处为白色,并且幅度与光子噪声一致。这些结果对开发大型,偏振敏感的毫米波成像仪具有重要意义。

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