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MUSE-inspired view of the quasar Q2059-360, its Lyman α blob, and its neighborhood

机译:受MUSE启发的类星体Q2059-360,其Lymanα斑点及其附近的视图

摘要

The radio-quiet quasar Q2059-360 at redshift z = 3.08 is known to be close to a small Lyman α blob (LAB) and to be absorbed by a proximate damped Lyα (PDLA) system. Here, we present the Multi Unit Spectroscopic Explorer (MUSE) integral field spectroscopy follow-up of this quasi-stellar object (QSO). Our primary goal is to characterize this LAB in detail by mapping it both spatially and spectrally using the Lyα line, and by looking for high-ionization lines to constrain the emission mechanism. Combining the high sensitivity of the MUSE integral field spectrograph mounted on the Yepun telescope at ESO-VLT with the natural coronagraph provided by the PDLA, we map the LAB down to the QSO position, after robust subtraction of QSO light in the spectral domain. In addition to confirming earlier results for the small bright component of the LAB, we unveil a faint filamentary emission protruding to the south over about 80 pkpc (physical kpc); this results in a total size of about 120 pkpc. We derive the velocity field of the LAB (assuming no transfer effects) and map the Lyα line width. Upper limits are set to the flux of the N v λ1238 - 1242, C iv λ1548 - 1551, He ii λ1640, and C iii] λ1548 - 1551 lines. We have discovered two probable Lyα emitters at the same redshift as the LAB and at projected distances of 265 kpc and 207 kpc from the QSO; their Lyα luminosities might well be enhanced by the QSO radiation. We also find an emission line galaxy at z = 0.33 near the line of sight to the QSO. This LAB shares the same general characteristics as the 17 others surrounding radio-quiet QSOs presented previously. However, there are indications that it may be centered on the PDLA galaxy rather than on the QSO. Based on observations collected at the European Organisation for Astronomical Research in the Southern Hemisphere under ESO programme 60.A-9331(A).
机译:已知在红移z = 3.08时非常安静的类星体Q2059-360靠近一个小的Lymanα斑点(LAB),并被附近的阻尼Lyα(PDLA)系统吸收。在这里,我们介绍了该准星体(QSO)的多单元光谱浏览器(MUSE)积分场光谱学跟踪研究。我们的主要目标是通过使用Lyα谱线在空间和光谱上对其进行映射,并寻找高电离谱线来限制发射机理,从而详细表征该LAB。将安装在ESO-VLT上的Yepun望远镜上的MUSE积分场光谱仪的高灵敏度与PDLA提供的自然日冕仪相结合,在光谱域中将QSO光强减后,我们将LAB映射到QSO位置。除了确认LAB的明亮小部件的早期结果外,我们还揭示了一个微弱的丝状发射物,向南突出超过80 pkpc(物理kpc)。这导致总大小约为120 pkpc。我们推导了LAB的速度场(假设没有传递效应),并绘制了Lyα线宽。上限设置为N vλ1238-1242,C ivλ1548-1551,He iiλ1640和C iii]λ1548-1551线的通量。我们发现了两个可能的Ly发射体,它们与LAB具有相同的红移,并且距QSO的投影距离分别为265 kpc和207 kpc。 QSO辐射可能会增强它们的Lyα光度。我们还在QSO的视线附近找到了一个z = 0.33处的发射线星系。该实验室具有与之前介绍的其他17种围绕无线电静音QSO相同的一般特征。但是,有迹象表明,它可能位于PDLA星系而非QSO的中心。根据欧洲南半球天文研究组织在ESO计划60.A-9331(A)下收集的观察结果。

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