English

WES - Weihai Echelle Spectrograph

Instrumentation and Methods for Astrophysics 2016-11-14 v2

Abstract

The Weihai Echelle Spectrograph (WES) is the first fiber-fed echelle spectrograph for astronomical observation in China. It is primarily used for chemical abundance and asteroseismology studies of nearby bright stars, as well as radial velocity detections for exoplanets. The optical design of WES is based on the widely demonstrated and well-established white-pupil concept. We describe the WES in detail and present some examples of its performance. A single exposure echelle image covers the spectral region 371-1,100 nm in 107 spectral orders over the rectangular CCD. The spectral resolution R=λ/ΔλR=\lambda/\Delta\lambda changes from 40,600 to 57,000 through adjusting the entrance slit width from full to 2.2 pixels sampling at the fiber-exit. The limiting magnitude scales to V=8V=8 with a signal-to-noise ratio (SNR) of more than 100 in VV for an hour exposure, at the spectral resolution R\approx40,000 in the median seeing of 1.7^{\prime\prime} at Weihai Observatory (WHO) for the 1-meter telescope. The radial velocity (RV) measurement accuracy of WES is estimated to be <<10 m/s in 10 months (302 days) and better than 15 m/s in 4.4 years (1,617 days) in the recent data processing.

Keywords

Cite

@article{arxiv.1611.00116,
  title  = {WES - Weihai Echelle Spectrograph},
  author = {Dong-Yang Gao and Hang-Xin Ji and Chen Cao and Shao-Ming Hu and Robert A. Wittenmyer and Zhong-Wen Hu and Frank Grupp and Hanna Kellermann and Kai Li and Di-Fu Guo},
  journal= {arXiv preprint arXiv:1611.00116},
  year   = {2016}
}

Comments

29 pages, 14 figures

R2 v1 2026-06-22T16:38:20.745Z