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GOALS-JWST: Constraining the Emergence Timescale for Massive Star Clusters in NGC 3256

Authors :
Linden, Sean T.
Lai, Thomas
Evans, Aaron S.
Armus, Lee
Larson, Kirsten L.
Rich, Jeffrey A.
U, Vivian
Privon, George C.
Inami, Hanae
Song, Yiqing
Bianchin, Marina
Bohn, Thomas
Buiten, Victorine A.
Sanchez-Garcia, Maria
Kader, Justin
Lenkic, Laura
Medling, Anne M.
Boeker, Torsten
Diaz-Santos, Tanio
Charmandaris, Vassilis
Barcos-Munoz, Loreto
van der Werf, Paul
Stierwalt, Sabrina
Aalto, Susanne
Appleton, Philip
Hayward, Christopher C.
Howell, Justin H.
Malkan, Matthew A.
Mazzarella, Joseph M.
Murphy, Eric J.
Surace, Jason
Publication Year :
2024

Abstract

We present the results of a James Webb Space Telescope (JWST) NIRCam and NIRSpec investigation into the young massive star cluster (YMC) population of NGC 3256, the most cluster-rich luminous infrared galaxy (LIRG) in the Great Observatories All Sky LIRG Survey. We detect 3061 compact YMC candidates with a $S/N \geq 3$ at F150W, F200W, and F335M. Based on yggdrasil stellar population models, we identify 116/3061 sources with F150W - F200W $> 0.47$ and F200W - F355M $> -1.37$ colors suggesting they are young (t $\leq 5$ Myr), dusty ($A_{V} = 5 - 15$), and massive ($M_{\odot} > 10^{5}$). This increases the sample of dust-enshrouded YMCs detected in this system by an order of magnitude relative to previous HST studies. With NIRSpec IFU pointings centered on the northern and southern nucleus, we extract the Pa$\alpha$ and 3.3$\mu$m PAH equivalent widths for 8 bright and isolated YMCs. Variations in both the F200W - F335M color and 3.3$\mu$m PAH emission with the Pa$\alpha$ line strength suggest a rapid dust clearing ($< 3 - 4$ Myr) for the emerging YMCs in the nuclei of NGC 3256. Finally, with both the age and dust emission accurately measured we use yggdrasil to derive the color excess (E(B - V)) for all 8 YMCs. We demonstrate that YMCs with strong 3.3$\mu$m PAH emission (F200W - F335M $> 0$) correspond to sources with E(B - V) $> 3$, which are typically missed in UV-optical studies. This underscores the importance of deep near-infrared imaging for finding and characterizing these very young and dust-embedded sources.<br />Comment: 18 pages, 7 figures, 1 table; Accepted for publication in ApJL

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2409.16503
Document Type :
Working Paper