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首页> 外文期刊>Superconductor Science & Technology >Rugged superconducting detector for monitoring infrared energy sources in harsh environments
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Rugged superconducting detector for monitoring infrared energy sources in harsh environments

机译:坚固的超导探测器,可在恶劣环境下监控红外能源

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Broadband electromagnetic characterization of hot plasmas, such as in nuclear fusion reactors and related experiments, requires detecting systems that must withstand high flux of particles and electromagnetic radiations. We propose a rugged layout of a high temperature superconducting detector aimed at 3 THz collective Thomson scattering (CTS) spectroscopy in hot fusion plasma. The YBa_2Cu_3O_(7-x) superconducting film is patterned by standard photolithography and the sensing area of the device is created by means of high-energy heavy ion irradiation, in order to modify the crystal structure both of the superconducting film and of the substrate. This method diminishes process costs and resulting device fragility due to membrane or air-bridge structures that are commonly needed for MIR and FIR radiation detection. Moreover the sensing area of the device is wired by the same superconducting material and thus excellent mechanical strength is exhibited by the whole device, due to the oxide substrate. Continuous wave operation of prototype devices is demonstrated at liquid nitrogen temperature, for selected infrared spectra of broadband thermal energy sources. Several solutions, which exploit the advantages coming from the robustness of this layout in terms of intrinsic radiation hardness of the superconducting material and of the needed optical components, are analysed with reference to applications of infrared electromagnetic detectors in a tokamak machine environment.
机译:诸如在核聚变反应堆和相关实验中对热等离子体的宽带电磁表征,要求检测系统必须能够承受高通量的粒子和电磁辐射。我们提出了一种针对热熔融等离子体中3 THz集合汤姆森散射(CTS)光谱的高温超导探测器的坚固布局。通过标准光刻对YBa_2Cu_3O_(7-x)超导膜进行构图,并通过高能重离子辐照来创建器件的感测区域,以同时改变超导膜和衬底的晶体结构。由于膜或气桥结构通常是MIR和FIR辐射检测所必需的,因此该方法减少了工艺成本并减少了设备的易碎性。此外,该装置的感测区域由相同的超导材料布线,并且由于氧化物衬底,因此整个装置表现出优异的机械强度。在液氮温度下,对宽带热源的选定红外光谱证明了原型设备的连续波操作。参考了在托卡马克机器环境中红外电磁探测器的应用,分析了几种解决方案,这些解决方案利用了这种布局的稳健性,这些优势来自于超导材料和所需光学组件的固有辐射硬度方面。

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