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Development of Lumped Element Kinetic Inductance Detectors for NIKA

机译:NIKA集总元件动力学电感检测器的开发

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Lumped-element kinetic inductance detectors (LEKIDs) have recently shown considerable promise as direct-absorption mm-wavelength detectors for astronomical applications. One major research thrust within the Neel Iram Kids Array (NIKA) collaboration has been to investigate the suitability of these detectors for deployment at the 30-meter IRAM telescope located on Pico Veleta in Spain. Compared to microwave kinetic inductance detectors (MKID), using quarter wavelength resonators, the resonant circuit of a LEKID consists of a discrete inductance and capacitance coupled to a feedline. A high and constant current density distribution in the inductive part of these resonators makes them very sensitive. Due to only one metal layer on a silicon substrate, the fabrication is relatively easy. In order to optimize the LEKIDs for this application, we have recently probed a wide variety of individual resonator and array parameters through simulation and physical testing. This included determining the optimal feed-line coupling, pixel geometry, resonator distribution within an array (in order to minimize pixel cross-talk), and resonator frequency spacing. Based on these results, a 144-pixel Aluminum array was fabricated and tested in a dilution fridge with optical access, yielding an average optical NEP of ~2 × 10-16 W/Hz^l/2 (best pixels showed NEP = 6 × 10-17 W/Hz^l/2 under 4-8 pW loading per pixel). In October 2010 the second prototype (NIKA2) of LEKIDs has been tested at the IRAM 30 m telescope. A new LEKID geometry for 2 polarizations will be presented. Also first optical measurements of a titanium nitride array will be discussed.
机译:集总动电感检测器(LEKIDs)作为天文应用的直接吸收毫米波检测器,最近显示出很大的前景。 Neel Iram Kids Array(NIKA)合作的一项主要研究重点是调查这些探测器是否适合在西班牙Pico Veleta的30米IRAM望远镜上部署。与使用四分之一波长谐振器的微波动电感检测器(MKID)相比,LEKID的谐振电路由分立的电感和耦合到馈线的电容组成。这些谐振器的电感部分中的电流密度分布高且恒定,这使其非常敏感。由于硅衬底上仅一个金属层,因此制造相对容易。为了针对该应用优化LEKID,我们最近通过仿真和物理测试探究了各种各样的单个谐振器和阵列参数。这包括确定最佳馈线耦合,像素几何形状,阵列内的谐振器分布(以最小化像素串扰)以及谐振器频率间隔。根据这些结果,制造了一个144像素的铝阵列,并在带光学通道的稀释冰箱中进行了测试,得出的平均光学NEP为〜2×10-16 W / Hz ^ l / 2(最佳像素的NEP = 6×每个像素4-8 pW负载下10-17 W / Hz ^ l / 2)。 2010年10月,LEKID的第二个原型(NIKA2)已在IRAM 30 m望远镜上进行了测试。将介绍用于2个极化的新LEKID几何形状。还将讨论氮化钛阵列的第一光学测量。

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