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Early results from GLASS-JWST. VII: evidence for lensed, gravitationally bound proto-globular clusters at z=4 in the Hubble Frontier Field A2744

Authors :
Vanzella, E.
Castellano, M.
Bergamini, P.
Treu, T.
Mercurio, A.
Scarlata, C.
Rosati, P.
Grillo, C.
Acebron, A.
Caminha, G. B.
Nonino, M.
Nanayakkara, T.
Roberts-Borsani, G.
Bradac, M.
Wang, X.
Brammer, G.
Strait, V.
Vulcani, B.
Mestric, U.
Meneghetti, M.
Calura, F.
Henry, A.
Zanella, A.
Trenti, M.
Boyett, K.
Morishita, T.
Calabro, A.
Glazebrook, K.
Marchesini, D.
Birrer, S.
Yang, L.
Jones, T.
Publication Year :
2022

Abstract

We investigate the blue and optical rest-frame sizes (lambda~2300A-4000A) of three compact star-forming regions in a galaxy at z=4 strongly lensed (x30, x45, x100) by the Hubble Frontier Field galaxy cluster A2744 using GLASS-ERS JWST/NIRISS imaging at 1.15um, 1.50mu and 2.0mu with PSF < 0.1". In particular, the Balmer break is probed in detail for all multiply-imaged sources of the system. With ages of a few tens of Myr, stellar masses in the range (0.7-4.0) x 10^6 Msun and optical/ultraviolet effective radii spanning the interval 3 < R_eff < 20 pc, such objects are currently the highest redshift (spectroscopically-confirmed) gravitationally-bound young massive star clusters (YMCs), with stellar mass surface densities resembling those of local globular clusters. Optical (4000A, JWST-based) and ultraviolet (1600A, HST-based) sizes are fully compatible. The contribution to the ultraviolet underlying continuum emission (1600A) is ~30%, which decreases by a factor of two in the optical for two of the YMCs (~4000A rest-frame), reflecting the young ages (<30 Myr) inferred from the SED fitting and supported by the presence of high-ionization lines secured with VLT/MUSE. Such bursty forming regions enhance the sSFR of the galaxy, which is ~10 Gyr^-1. This galaxy would be among the extreme analogs observed in the local Universe having high star formation rate surface density and high occurrence of massive stellar clusters in formation.<br />Comment: 10 pages, 4 figures, 1 table. Submitted to ApJL

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2208.00520
Document Type :
Working Paper
Full Text :
https://doi.org/10.3847/2041-8213/ac8c2d