论文标题

大爆炸后探测圆环培养基2.8 Gyr:在阳光弧中检测Bowen荧光

Probing the circum-stellar medium 2.8 Gyr after the Big Bang: detection of Bowen fluorescence in the Sunburst arc

论文作者

Vanzella, E., Meneghetti, M., Pastorello, A., Calura, F., Sani, E., Cupani, G., Caminha, G. B., Castellano, M., Rosati, P., D'Odorico, V., Cristiani, S., Grillo, C., Mercurio, A., Nonino, M., Brammer, G. B., Hartman, H.

论文摘要

我们发现Bowen发射是由强烈的镜头(即放大系数$μ> 20)托管在Z = 2.37的阳光弧中的源。我们声称该来源可能是一种短暂的恒星对象,并研究了从中出现的独特紫外线。特别是,狭窄($σ$ _V〜40 km/s)的电离荧光电离线暴露于Lya辐射后,该辐射有选择地泵送其原子水平。来自VLT/MUSE,X射击和意式浓缩咖啡观测(后者放置在四个UTS的焦点)的数据分别升高为r = 2500、11400和R = 70000,确认此类荧光线以来至少存在3.3年(〜1年的休息时间)。已经检测到其他Fe禁止线,而C和SI Doublets探测电子密度n_e>〜$ 10^6 $ cm $^{ - 3} $。观察到在较丰富的辐射条件下探测圆环密集的气体冷凝的ETA-Carinae的圆周Weigelt Blob中观察到的光谱特征的相似性。我们讨论了瞬态事件的物理起源,但尚不清楚。我们预计,由于自适应光学元件和大型收集区域提供的高角度分辨率,尤其是在适度的($μ<3 $)放大倍率方面,这种瞬态事件(包括超新星或冒名顶替者)将很容易识别出ELT。

We discovered Bowen emission arising from a strongly lensed (i.e., with magnification factor $μ$>20) source hosted in the Sunburst arc at z=2.37. We claim this source is plausibly a transient stellar object and study the unique ultraviolet lines emerging from it. In particular, narrow ($σ$_v ~ 40 km/s) ionisation lines of Fe fluoresce after being exposed to Lya radiation that pumps selectively their atomic levels. Data from VLT/MUSE, X-Shooter and ESPRESSO observations (the latter placed at the focus of the four UTs) at increasing spectral resolution of R=2500, 11400 and R=70000, respectively, confirm such fluorescent lines are present since at least 3.3 years (~ 1 year rest-frame). Additional Fe forbidden lines have been detected, while C and Si doublets probe an electron density n_e >~ $10^6$ cm$^{-3}$. Similarities with the spectral features observed in the circum-stellar Weigelt blobs of Eta-Carinae probing the circum-stellar dense gas condensations in radiation-rich conditions are observed. We discuss the physical origin of the transient event, which remains unclear. We expect such transient events (including also supernova or impostors) will be easily recognised with ELTs thanks to high angular resolution provided by adaptive optics and large collecting area, especially in modest ($μ< 3$) magnification regime.

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