论文标题

在L乐队的19梁接收器FAST的基本表现

The Fundamental Performance of FAST with 19-beam Receiver at L Band

论文作者

Jiang, Peng, Tang, Ning-Yu, Hou, Li-Gang, Liu, Meng-Ting, Krco, Marko, Qian, Lei, Sun, Jing-Hai, Ching, Tao-Chung, Liu, Bin, Duan, Yan, Yue, You-Ling, Gan, Heng-Qian, Yao, Rui, Li, Hui, Pan, Gao-Feng, Yu, Dong-Jun, Liu, Hong-Fei, Li, Di, Peng, Bo, Yan, Jun, Collaboration, FAST

论文摘要

五百米的光圈球形射电望远镜(FAST)通过了全国接受,并进行了“共享风险”观察的试点周期。大多数这些观察结果都使用了覆盖1.05-1.45 GHz的19梁接收器。在3.5小时内,电子设备的增益波动大于1 \%,因此可以观察到足够的稳定性。指向精度,孔径效率和系统温度是快速的三个关键参数。指向精度的测量标准偏差为7.9 $''$,它满足了快速设计的初始设计。当天顶角度小于26.4 $^\ circ $时,孔径效率和系统温度在1.4 GHz左右为$ \ sim $ 0.63 $ 0.63和中央梁的24 K。这两个参数的测量值分别优于设计值0.6和25 K。证实19束后端的灵敏度和稳定性可以满足对N672的光谱HI观测值的预期,并对3C286的极化观测值满足。从脉冲星的研究到星系进化的研究,该性能可以快速进行各种科学目标的敏感观察。

The Five-hundred-meter Aperture Spherical radio Telescope (FAST) passed national acceptance and is taking pilot cycle of 'Shared-Risk' observations. The 19-beam receiver covering 1.05-1.45 GHz was used for most of these observations. The electronics gain fluctuation of the system is better than 1\% over 3.5 hours, enabling enough stability for observations. Pointing accuracy, aperture efficiency and system temperature are three key parameters of FAST. The measured standard deviation of pointing accuracy is 7.9$''$, which satisfies the initial design of FAST. When zenith angle is less than 26.4$^\circ$, the aperture efficiency and system temperature around 1.4 GHz are $\sim$ 0.63 and less than 24 K for central beam, respectively. The measured value of these two parameters are better than designed value of 0.6 and 25 K, respectively. The sensitivity and stability of the 19-beam backend are confirmed to satisfy expectation by spectral HI observations toward N672 and polarization observations toward 3C286. The performance allows FAST to take sensitive observations in various scientific goals, from studies of pulsar to galaxy evolution.

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