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Development of Superconductive Imaging Submillimeter-wave CAMera with nine detector elements (SISCAM-9)

机译:具有九个探测器元件的超导成像杂像比异数波相机的研制(SISCAM-9)

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We have developed the superconductive imaging submillimeter-wave camera with nine detector elements (SISCAM-9) for Atacama Submillimeter Telescope Experiment (ASTE). SISCAM-9 has nine SIS photon detectors as focal plane array detector at 680 GHz. To obtain background noise limited sensitivity, we need to operate detectors under the condition that noise is dominated by shot noise of background photo current. To realize this condition, we fabricated low noise readout circuits using Si-JFETs. In laboratory, we evaluated performance of nine SIS photon detectors. This is the first demonstration of 2D array of SIS photon detector for SISCAM-9. Measuring Ⅰ-Ⅴcharacteristics, detector gap voltages were 4.9 mV and photo currents were 3 nA. Measuring spectral responses, they had almost same center frequency of 679 GHz and bandwidths of 77 GHz. They almost matched to 675 GHz atmospheric window from ASTE site. Detector noise under 300 K radiation were only a few times as large as the shot noise of photo current. Detector NEP was 1.7x10~(-15) W/Hz~(1/2),with the detector quantum efficiencies of 12 %. For the first time, SIS photon detectors worked under shot noise limited condition under 300 K background radiation. We have developed observation system, SISCAM-9, to realize the first astronomical observations. Detectors were mounted in a cryostat that can be remotely operated to cool the detectors to 0.46 K. We installed SISCAM-9 in the ASTE telescope and measured system performance such as photo current and noise characteristics. For the first time, SIS photon detectors operated under the observing condition. We succeeded in making the first astronomical observation of the moon.
机译:我们已经开发了超导成像亚毫米波摄像机具有九个检测器元件(SISCAM-9),用于阿塔卡马亚毫米波望远镜实验(ASTE)。 SISCAM-9具有九个SIS光子检测器作为在680 GHz的焦平面阵列检测器。以获得的背景噪声的灵敏度有限,我们需要一个噪声被的背景照片当前镜头噪声支配的条件下进行操作的检测器。为了实现这一条件,我们制造了使用的Si-JFET的低噪声读出电路。在实验室中,我们评估的九个SIS光子探测器的性能。这是SIS光子检测器的2D阵列,用于SISCAM-9的第一示范。测量Ⅰ-Ⅴcharacteristics,检测器间隙电压分别为4.9 mV与光电流分别为3 nA的。测量光谱响应,他们有679千兆赫的几乎相同的中心频率和77GHz的带宽的。他们几乎从ASTE网站相匹配的675 GHz的大气窗口。探测器噪声下300K的辐射只有少数倍大光电流的散粒噪声。检测器NEP是1.7×10〜(-15)W /赫兹〜(1/2)中,用12%的检测器的量子效率。首次,SIS光子检测器的散粒噪声限制的条件下下300K的背景辐射的工作。我们已经开发观测系统,SISCAM-9,实现第一天文观测。检测器被安装在该可远程操作到检测器冷却到0.46 K.我们安装在低温恒温器SISCAM-9在ASTE望远镜和测量的系统性能,例如光电流和噪声特性。首次,SIS光子检测器的观察条件下操作。我们成功地使月球的第一个天文观测。

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