Wide-field auroral imager onboard the Fengyun satellite.

IF 19.4 1区 物理与天体物理 Q1 Physics and Astronomy
Light, science & applications Pub Date : 2019-05-22 eCollection Date: 2019-01-01 DOI:10.1038/s41377-019-0157-7
Xiao-Xin Zhang, Bo Chen, Fei He, Ke-Fei Song, Ling-Ping He, Shi-Jie Liu, Quan-Feng Guo, Jia-Wei Li, Xiao-Dong Wang, Hong-Ji Zhang, Hai-Feng Wang, Zhen-Wei Han, Liang Sun, Pei-Jie Zhang, Shuang Dai, Guang-Xing Ding, Li-Heng Chen, Zhong-Su Wang, Guang-Wei Shi, Xin Zhang, Chao Yu, Zhong-Dong Yang, Peng Zhang, Jin-Song Wang
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引用次数: 38

Abstract

The newly launched Fengyun-3D (FY-3D) satellite carried a wide-field auroral imager (WAI) that was developed by Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences (CIOMP), which will provide a large field of view (FOV), high spatial resolution, and broadband ultraviolet images of the aurora and the ionosphere by imaging the N2 LBH bands of emissions. The WAI consists of two identical cameras, each with an FOV of 68° in the along-track direction and 10° in the cross-track direction. The two cameras are tilted relative to each other to cover a fan-shaped field of size 130° × 10°. Each camera consists of an unobstructed four-mirror anastigmatic optical system, a BaF2 filter, and a photon-counting imaging detector. The spatial resolution of WAI is ~10 km at the nadir point at a reference height of 110 km above the Earth's surface. The sensitivity is >0.01 counts s-1 Rayleigh-1 pixel-1 (140-180 nm) for both cameras, which is sufficient for mapping the boundaries and the fine structures of the auroral oval during storms/substorms. Based on the tests and calibrations that were conducted prior to launch, the data processing algorithm includes photon signal decoding, geometric distortion correction, photometric correction, flat-field correction, line-of-sight projection and correction, and normalization between the two cameras. Preliminarily processed images are compared with DMSP SSUSI images. The agreement between the images that were captured by two instruments demonstrates that the WAI and the data processing algorithm operate normally and can provide high-quality scientific data for future studies on auroral dynamics.

Abstract Image

Abstract Image

Abstract Image

风云卫星上的宽视场极光成像仪。
新发射的风云- 3d (FY-3D)卫星携带了由中国科学院长春光学精密机械与物理研究所(CIOMP)开发的宽视场极光成像仪(WAI),该成像仪将通过对发射的N2 LBH波段成像,提供大视场(FOV),高空间分辨率和宽频紫外极光和电离层图像。WAI由两个相同的摄像机组成,每个摄像机视场在沿轨道方向为68°,在交叉轨道方向为10°。两台相机相互倾斜,覆盖130°× 10°的扇形视场。每台相机由一个无遮挡的四镜消像散光学系统、一个BaF2滤光片和一个光子计数成像探测器组成。在地球表面以上110公里的参考高度上,WAI的空间分辨率在最低点为~10公里。两台相机的灵敏度均>0.01计数s-1瑞利-1像素-1 (140-180 nm),足以在风暴/亚风暴期间绘制极光椭圆的边界和精细结构。在发射前测试和标定的基础上,数据处理算法包括光子信号解码、几何畸变校正、光度校正、平场校正、视距投影和校正以及两台相机之间的归一化。将初步处理后的图像与DMSP SSUSI图像进行比较。两种仪器采集的图像一致,表明WAI和数据处理算法运行正常,可为今后的极光动力学研究提供高质量的科学数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
27.00
自引率
2.60%
发文量
331
审稿时长
20 weeks
期刊介绍: Light: Science & Applications is an open-access, fully peer-reviewed publication.It publishes high-quality optics and photonics research globally, covering fundamental research and important issues in engineering and applied sciences related to optics and photonics.
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