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The science case for POLLUX, a high-resolution UV spectropolarimeter onboard LUVOIR

机译:Pollux的科学案例,一个高分辨率紫外透光波拉米计板载Luvoir

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POLLUX is a high-resolution. UV spectropolarimeter proposed for the 15-meter primary mirror option of LUVOIR. The instrument Phase 0 study is supported by the French Space Agency (CNES) and performed by a consortium of European scientists. POLLUX has been designed to deliver high-resolution spectroscopy (R ≥ 120,000) over a broad spectral range (90-390 nm). Its unique spectropolarimetric capabilities will open-up a vast new parameter space, in particular in the unexplored UV domain and in a regime where high-resolution observations with current facilities in the visible domain are severely photon starved. POLLUX will address a range of questions at the core of the LUVOIR Science portfolio. The combination of high resolution and broad coverage of the UV bandpass will resolve narrow UV emission and absorption lines originating in diffuse media, thus permitting the study of the baryon cycle over cosmic time: from galaxies forming stars out of interstellar gas and grains, and stars forming planets, to the various forms of feedback into the interstellar and intergalactic medium (ISM and IGM), and active galactic nuclei (AGN). UV circular and linear polarimetry will reveal the magnetic fields for a wide variety of objects for the first time, from AGN outflows to a diverse range of stars, stellar explosions (both supernovae and their remnants), the ISM and IGM. It will enable detection of polarized light reflected from exoplanets (or their circumplanetary material and moons), characterization of the magnetospheres of stars and planets (and their interactions), and measurements of the influence of magnetic fields at the (inter)galactic scale. In this paper, we outline the key science cases of POLLUX, together with its high-level technical requirements. The instrument design, its estimated performances, and the required technology development are presented in a separated proceeding.
机译:Pollux是一种高分辨率。 UV分光功率提出了Luvoir的15米主镜选择。仪器阶段0研究由法国空间机构(CNES)支持,由欧洲科学家的财团进行。 Pollux设计用于在广谱范围内提供高分辨率光谱(R≥10,000)(90-390 nm)。其独特的散光度功能将开辟一个巨大的新参数空间,特别是在未开发的紫外线领域以及具有可见域中当前设施的高分辨率观测的政权中,严重的光子饥饿。 Pollux将在Luvoir科学组合的核心解决一系列问题。高分辨率和紫外线通道的广泛覆盖的组合将解决源于漫射介质的窄紫外线排放和吸收线,从而允许在宇宙时间上研究Baryon循环:从形成星形的星系和谷物的星系,以及星星形成行星,以将各种形式的反馈进入星际和间术培养基(ISM和IgM)和活性半乳核(AgN)中。 UV环状和线性偏振将揭示用于多种首次对象的磁场,从AGN流出到一个不同的范围分,恒星爆炸(包括超新星和它们的残余),则ISM和IgM。它将能够检测从外部凸起(或其环形材料和卫星)反射的偏振光,表征恒星和行星磁体(及其相互作用),以及磁场在(帧间)银级的影响的测量。在本文中,我们概述了Pollux的关键科学案例,以及其高级技术要求。仪器设计,其估计的性能和所需的技术开发在分离的程序中呈现。

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