【24h】

The Advanced Image Slicers of OCTOCAM

机译:八孔am的高级图像切片机

获取原文

摘要

OCTOCAM is the new large Gemini instrument in building. It is an imaging spectrograph with 8 cameras covering the range 370 nm to 2350 nm at a typical resolution of 3000-4000. It will have 2 IFUs, one for normal operation over all wavelengths, the other for AO in the NIR only and with a smaller field but a higher spectral resolution. Currently, no IFU exists that covers the entire range of VIS and NIR in a single observation. Such an IFU would have a number of applications: It can be used for resolved studies of HII regions over a broad wavelength range and emission line galaxies over a broad redshift range using the same set of emission lines. Another application is to observe transients with only arcseconds localization very early without waiting for a sub-arcsecond position, hence allowing to obtain very valuable early data. For bright transients such as SNe and GRBs we can study the immediate environment in detail, and even use the actual transient as AO tip-tilt star to study the environment at high spectral and very high angular resolutions. The IFUs will be Advanced Image Slicers, a proven concept now in use in many instruments around the world including Gemini NIFS, VLT MUSE and KMOS, and JWST NIRSpec. The normal operation slicer will have a field of 9.7" × 6.8" with 17 slices 0.4" wide giving 0.18" × 0.4" spaxels. The slices are smaller than the standard slit size of 0.54" (3 pixels) so will deliver higher spectral resolution. This IFU will deliver much higher performances than the GMOS IFU and NIFS with a larger field of view and spectral range but also considerably fewer pixels per arsec~2 then reducing the readout noise. With its wavelength range starting at 370 nm, diamond machining cannot be used. A glass slicer system will have to be used as in MUSE. The wavelength range will however be much larger covering the whole VIS and NIR range. Modern reflection coatings as UV enhanced silver can be used but a trade-off may be better by starting at a longer
机译:八陶瓷是建筑中新的大型双子座仪器。它是一个成像光谱仪,其8个摄像机,典型分辨率为3000-4000的典型分辨率覆盖370nm至2350nm的范围。它将有2个IFU,一个用于所有波长的正常操作,另一个用于NIR中的AO,并且具有较小的场,但频谱分辨率较高。目前,不存在于单一观察中涵盖整个VIR和NIR的IFU。这样的IFU将具有许多应用:它可以用于使用相同的一组发射线在广泛的红移范围内通过宽波长范围和排放线星系在宽波长范围和排放线星系上解决的研究。另一个应用程序是在不等待子弧形位置的情况下,在不等待弧秒定位的情况下观察瞬态,从而允许获得非常有价值的早期数据。对于诸如SNE和GRB的明亮瞬变,我们可以详细研究即时环境,甚至使用实际的瞬态作为AO TIP-TILT STAR来研究高光谱和非常高的角度分辨率的环境。 IFU将是先进的图像切片机,这是一个经过验证的概念,现在在世界各地的许多乐器中使用,包括Gemini Nifs,VLT Muse和kmos,以及JWST Nirspec。正常运行切片器将具有9.7“×6.8”的字段,17片0.4“宽,给出0.18”×0.4“的行星。切片小于0.54”(3像素)的标准狭缝尺寸,因此将提供更高的光谱分辨率。这款IFU将提供比GMOS IFU的表现更高,并且具有更大的视野和光谱范围,而且每个ARSEC〜2的像素也相当较少,则降低读出噪声。利用其波长范围从370nm开始,不能使用金刚石加工。玻璃切片机系统必须用作缪斯。然而,波长范围将大大覆盖整个VIS和NIR范围。现代反射涂层作为UV增强的银可以使用,但通过从更长的开始,权衡可能更好

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号