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SDSS-V Local Volume Mapper Instrument: Overview and Status

机译:SDSS-V本地卷映射器仪器:概述和状态

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The Sloan Digital Sky Survey V (SDSS-V) is an all-sky spectroscopic survey of >6 million objects, designed to decode the history of the Milky Way, reveal the inner workings of stars, investigate the origin of solar systems, and track the growth of supermassive black holes across the Universe. The Local Volume Mapper (LVM) is a facility designed to provide a contiguous 2,500 deg~2 integral-field survey over a 3.5 year period from Las Campanas Observatory in Chile. In this paper we provide an overview and status update for the LVM instrument (hereafter LVM-I). Each integral-field unit's spaxel probes linear scales that are sub-parsec (Milky Way) to ~10 pc (Magellanic Clouds) which is accomplished with an angular diameter of 36.9". LVM's spectral resolution is R = λ/△λ ~ 4,000 which probes velocities of 33 kms~(-1) (1 σ) from 365 nm to 950 nm. LVM uses four 16-cm telescopes feeding three spectrographs. One telescope carries the bulk of the science load with ~l,800 fibers coupled to the field via a pair of lenslet arrays, two telescopes are used to measure the night sky spectra in fields that flank the science field, and a fourth telescope contemporaneously monitors bright standard stars to determine atmospheric extinction. We expect LVM-I to deliver percent-level precision on important line ratios down to a few Rayleigh. The three spectrographs are being built by Winlight corporation in France based on those for the Dark Energy Spectroscopic Instrument (DESI). In this paper we present the high-level system design of LVM-I including the lenslet-coupled fiber IFUs, telescopes, guiding+acquisition system, calibration systems, enclosures, and spectrographs.
机译:斯隆数字巡天V(SDSS-V)是“6个亿个对象的全天空光谱巡天,旨在解码银河系的历史,揭示了恒星内部的工作,研究太阳系的起源和轨道穿越宇宙的超大质量黑洞的生长。本地卷映射器(LVM)是旨在提供了从拉斯维加斯纳斯天文台在智利的3.5年的时间连续的2500度〜2积分实地调查的设施。在本文中,我们提供了LVM仪(以下简称LVM-I)的概况和状态更新。每个整场单位的spaxel探针线性刻度是子秒差距(银河)至〜10 PC(麦哲伦云),其具有36.9" 。LVM的光谱分辨率的角直径实现是R =λ/△λ〜4000,其的33公里的速度探针〜(-1)(1σ)从365纳米到950纳米。LVM使用四个16厘米望远镜喂养3个摄谱仪,一个望远镜携带散装科学负载〜升,800个纤维耦合到所述通过对微透镜阵列场,两台望远镜是用来衡量在侧翼的科学领域领域夜空光谱和第四望远镜同时监控明亮的标准星来确定大气消光。我们预计LVM-I提供百分之级精密的重要防线比例下降到几瑞利,三个摄谱仪正在Winlight公司在法国基于这些对暗能量的光谱仪器(DESI)建造的。在本文中,我们提出LVM-I的高层次的系统设计包括lensle叔耦合光纤IFUs,望远镜,引导+采集系统,校准系统,机箱和摄谱仪。

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