Open AccessPhysicsEngineering

X. Cui, Yongheng Zhao, Y. Chu, Guo-ping Li, Qi Li, Liping Zhang, H. Su, Zheng-qiu Yao, Ya-nan Wang, X. Xing, Xin-nan Li, Yong-tian Zhu, Gang Wang, B. Gu, A. Luo, Xinqi Xu, Zhen-chao Zhang, Gen-rong Liu, Haopeng Zhang, De-hua Yang, S. Cao, Hai Chen, Jian-Jun Chen, Kunxin Chen, Ying Chen, Jianjun Chu, Lei Feng, X. Gong, Yonghui Hou, Hongzhuan Hu, N. Hu, Zhongjun Hu, L. Jia, Fa Jiang, Xiang Jiang, Ziqing Jiang, G. Jin, Ai-hua Li, Yan Li, Yeping Li, Guangshan Liu, Zhigang Liu, WEN-ZHI Lu, Y. Mao, Li Men, Yongjun Qi, Z. Qi, Huoming Shi, Zheng-hong Tang, Qingnian Tao, Da-Qi Wang, Danial Q. Wang, Guo-min Wang, Hai Wang, Jia-Ning Wang, J. Wang, Jianlei Wang, Jianping Wang, Lei Wang, Shuquan Wang, You Wang, Yuefei Wang, Lingyun Xu, Yan Xu, Shi-Hai Yang, Yong Yu, Hui Yuan, Xiang Yuan, C. Zhai, Jing Zhang, Yan-xia Zhang, Yong Zhang, Ming-ze Zhao, Fang Zhou, Guoyao Zhou, Jiejun Zhu, S. Zou

2012.8.15Research in Astronomy and Astrophysics

DOI: 10.1088/1674-4527/12/9/003

Abstract

The Large Sky Area Multi-Object Fiber Spectroscopic Telescope (LAMOST, also called the Guo Shou Jing Telescope) is a special reflecting Schmidt telescope. LAMOST's special design allows both a large aperture (effective aperture of 3.6 m–4.9 m) and a wide field of view (FOV) (5°). It has an innovative active reflecting Schmidt configuration which continuously changes the mirror's surface that adjusts during the observation process and combines thin deformable mirror active optics with segmented active optics. Its primary mirror (6.67 m × 6.05 m) and active Schmidt mirror (5.74m × 4.40m) are both segmented, and composed of 37 and 24 hexagonal sub-mirrors respectively. By using a parallel controllable fiber positioning technique, the focal surface of 1.75 m in diameter can accommodate 4000 optical fibers. Also, LAMOST has 16 spectrographs with 32 CCD cameras. LAMOST will be the telescope with the highest rate of spectral acquisition. As a national large scientific project, the LAMOST project was formally proposed in 1996, and approved by the Chinese government in 1997. The construction started in 2001, was completed in 2008 and passed the official acceptance in June 2009. The LAMOST pilot survey was started in October 2011 and the spectroscopic survey will launch in September 2012. Up to now, LAMOST has released more than 480000 spectra of objects. LAMOST will make an important contribution to the study of the large-scale structure of the Universe, structure and evolution of the Galaxy, and cross-identification of multi-waveband properties in celestial objects.

Citation format

CUI, X., et al. The large sky area multi-object fiber spectroscopic telescope (LAMOST). Research in Astronomy and Astrophysics, 2012, 12: 1197–1242.