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Cryogenic IR/Optical/UV fast spectrophotometers for the study of time-variable astronomical sources

机译:低温红外/光学/紫外快速分光光度计,用于研究时变天文来源

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Our detectors are superconducting Transition-Edge Sensors (TESs) that have been designed for photon counting in the energy (wavelength) range of 0.5eV (2.5 mum) range of 0.5 eV (2.5 mum) to 10eV (124 nm). Our design consists of a 6x6 array of 20 mum by 20 mum pixels, of which four were operated simultaneously at count rates exceeding 30 K-counts/pixel. Each photon is time-tagged to 0.4 mus using a GPS signal processor, and the energy is determined to approximately 0.15 eV FWHM. These results are the best achieved for an energy dispersive spectrometer (EDS) in the optical range. We discuss the detector design and operation, otpical coupling and high-rate data acquisition system. IN adidtion, we discuss the next step towared detectors with improved light collection and higher energy resolution. We also present recent results from latest application of our fast spectrophotometers to the study of highly time-variable sources using the 2.7 m telescope at the McDonald Observatory.
机译:我们的检测器是超导过渡边缘传感器(TES),其设计用于在0.5eV(2.5 mum)的能量(波长)范围内(0.5 eV(2.5 mum)到10eV(124 nm)范围内的光子计数)。我们的设计由一个20x 20像素的6x6阵列组成,其中四个像素以超过30K计数/像素的计数速率同时工作。使用GPS信号处理器将每个光子的时间标记为0.4 mus,并将能量确定为大约0.15 eV FWHM。对于在光学范围内的能量色散光谱仪(EDS)而言,这些结果是最好的。我们讨论了探测器的设计和操作,典型耦合和高速率数据采集系统。作为辅助,我们讨论了下一步将改进的光收集器和更高的能量分辨率的探测器。我们还介绍了我们最新的快速分光光度计在麦当劳天文台使用2.7 m望远镜研究高时变光源的最新结果。

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