首页> 外文会议>Conference on ground-based and airborne instrumentation for astronomy >PIMMS echelle: the next generation of compact diffraction limited spectrographs for arbitrary input beams
【24h】

PIMMS echelle: the next generation of compact diffraction limited spectrographs for arbitrary input beams

机译:PIMMS echelle:用于任意输入光束的下一代紧凑型衍射限量光谱仪

获取原文

摘要

PIMMS echelle is an extension of previous PIMMS (photonic integrated multimode spectrograph) designs, enhanced by using an echelle diffraction grating as the primary dispersing element for increased spectral bandwidth. The spectrograph operates at visible wavelengths (550 to 780nm), and is capable of capturing ~100 nm of R > 60,000 (λ/λλ) spectra in a single exposure. PIMMS echelle uses a photonic lantern to convert an arbitrary (e.g. incoherent) input beam into N diffraction-limited outputs (i.e. N single-mode fibres). This allows a truly diffraction limited spectral resolution, while also decoupling the spectrograph design from the input source. Here both the photonic lantern and the spectrograph slit are formed using a single length of multi-core fibre. A 1×19 (1 multi-mode fiber to 19 single-mode fibres) photonic lantern is formed by tapering one end of the multi-core fibre, while the other end is used to form a TIGER mode slit (i.e. for a hexagonal grid with sufficient spacing and the correct orientations, the cores of the multi-core fibre can be dispersed such that they do not overlap without additional reformatting). The result is an exceptionally compact, shoebox sized, spectrograph that is constructed primarily from commercial off the shelf components. Here we present a brief overview of the echelle spectrograph design, followed by results from on-sky testing of the breadboard mounted version of the spectrograph at the 'UK Schmidt Telescope'.
机译:PIMMS Echelle是先前PIMMS(光子集成多模体谱仪)设计的延伸,通过使用梯度衍射光栅作为初级分散元件来增强,用于增加光谱带宽。光谱仪以可见波长(550至780nm)为操作,并且能够在单个曝光中捕获〜100nm的r> 60,000(λ/λλ)光谱。 PIMMS Echelle使用光子灯来将任意(例如非相干)输入光束转换为N衍射限制输出(即N单模纤维)。这允许真正的衍射有限的光谱分辨率,同时还从输入源切开光谱仪设计。这里使用光子灯和光谱仪狭缝使用单个长度的多芯光纤形成。通过逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐逐渐变细,而另一端用于形成六角形狭缝(即,用于六边形网格的粘液模式狭缝形成光子灯具有足够的间隔和正确的方向,可以分散多芯纤维的核心,使得它们在没有额外重新格式化的情况下不重叠。结果是一种异常紧凑的鞋盒尺寸,光谱仪,主要由商业架子组件构成。在这里,我们简要概述了梯定光谱仪设计,其次是在“英国施密特望远镜”的光面上的纸板安装版本的天空测试中的结果。

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