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Design and Electrical Performance of the Kinetic Inductance Detectors of the OLIMPO Experiment

机译:OLIMPO实验的动力学电感检测器的设计和电气性能

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We are going to describe the design and the electrical performance of the horn-coupled lumped element kinetic inductance detectors (LEKIDs) for the OLIMPO experiment. OLIMPO is a balloon-borne mission, devoted to the study of the largest structures in the Universe, by detecting the Sunyaev-Zel'dovich effect of the Cosmic Microwave Background (CMB) photons crossing clusters of galaxies. The multi-band focal planes (centered at 150, 200, 350 and 480 GHz), large aperture telescope (2.6 m), photometric and spectrometer configuration (OLIMPO is equipped with a plug-in differential Fourier transform spectrometer) make OLIMPO able to characaterise all the components of the Sunyaev-Zel'dovich effect with unprecedented precision. The design of the LEKIDs has been optimised to cope with a wide range of optical loadings (corresponding to both photometric and spectrometric configurations). The electrical characterisation of the LEKID arrays was performed in the OLIMPO cryostat, at a temperature around 300 mK and under a constant optical load lower than 500 fW. The readout electronics is a customised ROACH-2 coupled to a MUSIC DAC/ADC board. The averaged responsivities for the arrays, measured from the phase readout, are 1.18x10^11 rad/W for the 150 GHz array, 4.10x10^10 rad/W for the 200 GHz array, 1.09x10^12 rad/W for the 350 GHz array, and 4.41x10^11 rad/W for the 480 GHz array. Therefore, measuring the spectral noise density for each pixels of the arrays, whose average values are 2.5x10^-5 rad/Hz^(1/2) for the 150 GHz array, 3.6x10^-5 rad/Hz^(1/2) for the 200 GHz array, 5.1x10^-5 rad/Hz^(1/2) for the 350 GHz array, and 1.9x10^-5 rad/Hz^(1/2) for the 480 GHz array, we obtained the values of the averaged electrical noise equivalent power (NEP) over all the arrays: 2x10^-16 W/Hz^(1/2), 9x10^-16 W/Hz^(1/2), 5x10^-17 W/Hz^(1/2), and 4x10^-17 W/Hz^(1/2) respectively for the four OLIMPO arrays.
机译:我们将描述用于OLIMPO实验的喇叭耦合集总元件动电感检测器(LEKID)的设计和电气性能。 OLIMPO是一项气球飞行任务,致力于通过探测穿越宇宙星系团的宇宙微波背景(CMB)光子的Sunyaev-Zel'dovich效应来研究宇宙中最大的结构。多波段焦平面(以150、200、350和480 GHz为中心),大口径望远镜(2.6 m),光度计和光谱仪配置(OLIMPO配备了插入式差分傅立叶变换光谱仪)使OLIMPO能够表征Sunyaev-Zel'dovich效果的所有组成部分都具有前所未有的精度。 LEKID的设计已经过优化,可以应对各种光学负载(对应于光度和光谱配置)。 LEKID阵列的电表征是在OLIMPO低温恒温器中进行的,温度约为300 mK,恒定光学负载低于500 fW。读出电子器件是定制的ROACH-2,耦合到MUSIC DAC / ADC板。根据相位读数测得的阵列平均响应率为150 GHz阵列为1.18x10 ^ 11 rad / W,200 GHz阵列为4.10x10 ^ 10 rad / W,350为1.09x10 ^ 12 rad / W GHz阵列,而480 GHz阵列为4.41x10 ^ 11 rad / W。因此,测量阵列每个像素的频谱噪声密度,对于150 GHz阵列,其平均值为2.5x10 ^ -5 rad / Hz ^(1/2),3.6x10 ^ -5 rad / Hz ^(1 / 2)对于200 GHz阵列,对于350 GHz阵列为5.1x10 ^ -5 rad / Hz ^(1/2),对于480 GHz阵列为1.9x10 ^ -5 rad / Hz ^(1/2),我们获得了所有阵列的平均电噪声等效功率(NEP)的值:2x10 ^ -16 W / Hz ^(1/2),9x10 ^ -16 W / Hz ^(1/2),5x10 ^ -17对于四个OLIMPO阵列,分别为W / Hz ^(1/2)和4x10 ^ -17 W / Hz ^(1/2)。

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