优化用于紫外、光学和近红外微波动感探测器的钛/氮化钛多层膜

IF 1.1 3区 物理与天体物理 Q4 PHYSICS, APPLIED
Gerhard Ulbricht, Mario De Lucia, Jack Piercy, Oisín Creaner, Colm Bracken, Cáthal McAleer, Tom Ray
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引用次数: 0

摘要

微波动感探测器(MKID)结合了光子探测的显著优势,如单光子计数、单像素能量分辨率、消失暗计数和 µs 时间分辨率,而且设计简单,可以扩展到百万像素范围。但是,高质量 MKID 的制造仍然具有挑战性,因为现有的超导体往往具有固有的缺点,难以沉积或需要非常低的工作温度。在远红外和亚毫米 MKID 方面,Ti 和 TiN 薄膜的交替堆叠已经显示出非常令人印象深刻的效果,因此它们也有望在紫外、可见光到近红外 MKID 方面实现重大改进,尤其是它们在制造和控制方面具有可比性。在本文中,我们将介绍我们正在进行的将近距离耦合超导薄膜用于光子计数 MKID 的项目。钛/钛镍多层膜的一些主要优点是临界温度(Tc)控制良好,即使在大面积晶片上也能保持极高的 Tc 均一性,从而有望提高像素产量,尤其是大型阵列的像素产量。我们展示了制造过程中不同温度对探测器性能的影响,并讨论了暴露硅表面氧化引起的过量相位噪声。我们的第一批原型产品的光子能量分辨力高达 3.1,但结果表明灵敏度太低。由于介绍的工作仍在进行中,我们还讨论了计划在不久的将来进行的进一步改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Optimizing Ti/TiN Multilayers for UV, Optical and Near-IR Microwave Kinetic Inductance Detectors

Optimizing Ti/TiN Multilayers for UV, Optical and Near-IR Microwave Kinetic Inductance Detectors

Microwave Kinetic Inductance Detectors (MKIDs) combine significant advantages for photon detection like single photon counting, single pixel energy resolution, vanishing dark counts and µs time resolution with a simple design and the feasibility to scale up into the megapixel range. But high quality MKID fabrication remains challenging as established superconductors tend to either have intrinsic disadvantages, are challenging to deposit or require very low operating temperatures. As alternating stacks of thin Ti and TiN films have shown very impressive results for far-IR and sub-mm MKIDs, they promise significant improvements for UV, visible to near-IR MKIDs as well, especially as they are comparably easy to fabricate and control. In this paper, we present our ongoing project to adapt proximity coupled superconducting films for photon counting MKIDs. Some of the main advantages of Ti/TiN multilayers are their good control of critical temperature (Tc) and their great homogeneity of Tc even over large wafers, promising improved pixel yield especially for large arrays. We demonstrate the effect different temperatures during fabrication have on the detector performance and discuss excess phase noise observed caused by surface oxidization of exposed Si. Our first prototypes achieved photon energy resolving powers of up to 3.1 but turned out to be much too insensitive. As the work presented is still in progress, we also discuss further improvements planned for the near future.

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来源期刊
Journal of Low Temperature Physics
Journal of Low Temperature Physics 物理-物理:凝聚态物理
CiteScore
3.30
自引率
25.00%
发文量
245
审稿时长
1 months
期刊介绍: The Journal of Low Temperature Physics publishes original papers and review articles on all areas of low temperature physics and cryogenics, including theoretical and experimental contributions. Subject areas include: Quantum solids, liquids and gases; Superfluidity; Superconductivity; Condensed matter physics; Experimental techniques; The Journal encourages the submission of Rapid Communications and Special Issues.
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