论文标题
进球:揭示发光红外星系VV 114中埋藏的恒星簇
GOALS-JWST: Revealing the Buried Star Clusters in the Luminous Infrared Galaxy VV 114
论文作者
论文摘要
我们介绍了{\ it James Webb太空望远镜} Nircam对发光红外星系VV 114中年轻的大型星团(YMC)人群的调查。我们确定了374个紧凑型YMC YMC候选者,具有$ S/N \ geq 3 $ 3 $,5,5,f150w,f150w,f2000w和f2006和F356,以及5。与我们的{\ it HST}直接比较群集目录表明,这些来源的$ \ sim 20 \%$在光学波长下未发现。基于{\ it yggdrasil}恒星种群模型,我们在{\ it JWST}中单独识别17个YMC候选者,其中具有F150W-F200W和F200W-F356W的颜色,表明他们都非常年轻,dusty,$ a_ {v} = 5-15 $ __________________5}^<5-15 $} <m 10^{6.1} $)。这些隐藏的来源的发现,其中许多是在两个核之间的“重叠”区域中发现的,四倍的$ t <3 $ myr簇的数量,几乎是$ t <6 $ t <6 $ myr群集的数量,在VV 114中发现了一倍。 $γ= -1.30 \ pm 0.39 $ for $ 10^{6} <τ(\ mathrm {yr})<10^{7} $,这与先前确定的值从$ 10^{7} {7} <τ(\ m m iartrm {yr})<10^{8.5} $ new a apter and a a st Stine vv a n e e star a vv s a a vv a n a vv(vv)保持一致。在整个集群年龄范围内观察到。最后,我们的{\ it JWST} - 和{\ it Hst}衍生的年龄分布斜率之间的一致性表明,在过去的0.5 GYR中,VV 114的群集形成和破坏之间的平衡并未显着改变。
We present the results of a {\it James Webb Space Telescope} NIRCam investigation into the young massive star cluster (YMC) population in the luminous infrared galaxy VV 114. We identify 374 compact YMC candidates with a $S/N \geq 3$, 5, and 5 at F150W, F200W, and F356W respectively. A direct comparison with our {\it HST} cluster catalog reveals that $\sim 20\%$ of these sources are undetected at optical wavelengths. Based on {\it yggdrasil} stellar population models, we identify 17 YMC candidates in our {\it JWST} imaging alone with F150W-F200W and F200W-F356W colors suggesting they are all very young, dusty ($A_{V} = 5 - 15$), and massive ($10^{5.8} < M_{\odot} < 10^{6.1}$). The discovery of these `hidden' sources, many of which are found in the `overlap' region between the two nuclei, quadruples the number of $t < 3$ Myr clusters, and nearly doubles the number of $t < 6$ Myr clusters detected in VV 114. Now extending the cluster age distribution ($dN/dτ\propto τ^γ$) to the youngest ages, we find a slope of $γ= -1.30 \pm 0.39$ for $10^{6} < τ(\mathrm{yr}) < 10^{7}$, which is consistent with the previously determined value from $10^{7} < τ(\mathrm{yr}) < 10^{8.5}$, and confirms that VV 114 has a steep age distribution slope for all massive star clusters across the entire range of cluster ages observed. Finally, the consistency between our {\it JWST}- and {\it HST}-derived age distribution slopes indicates that the balance between cluster formation and destruction has not been significantly altered in VV 114 over the last 0.5 Gyr.