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The Koi Pond: A Strongly Lensed Protocluster Core hosting a Diverse Population of DSFGs

Authors: Nicholas Foo, Kevin C. Harrington, Brenda L. Frye, Patrick S. Kamieneski, Melanie Kaasinen, Rafael Ortiz III, Alex Pigarelli, Gibson B. Bowling, Bel\'en Alcalde Pampliega, Joe Bhangal, Timothy Carleton, Jianhang Chen, Seth H. Cohen, Camila de S\'a-Freitas, Jose Diego, Rom\'an Fern\'andez Aranda, Carlos Garcia Diaz, Nikhil Garuda, Eric F. Jim\'enez-Andrade, Daizhong Liu, James D. Lowenthal, Allison Man, Allison Noble, Massimo Pascale, Francesca Rizzo, Hannah R. Stacey, Amit Vishwas, Q. Daniel Wang, Rogier A. Windhorst, Ilsang Yoon, Min S. Yun, Dazhi ZhouPublished: 2026-08-17Paper ID: 2608.15997Category: astro-ph.GALicense: CC BY 4.0

Abstract

We present James Webb Space Telescope (JWST) and Atacama Large Millimeter Array (ALMA) observations of PJ0846+15, \textit{The Koi Pond}, a strongly lensed protocluster core at Cosmic Noon. This field offers a magnified view of 11 dusty star-forming galaxies (DSFGs) all at $z=2.67$ (within $\Delta V=800$ km s$^{-1}$) spanning a projected extent of $>300$ kpc lensed by a $z=0.77$ foreground cluster. NIRCam and ALMA Band 6 continuum measurements map the stellar distribution and thermal dust emission respectively at a spatial resolution of $\sim$0.15$^{\prime\prime}$. This analysis reveals a diverse population of DSFGs, with evidence of both interacting and non-interacting systems exhibiting a wide range of morphological features including spiral arms, bars, bulges, clumps/stellar clusters, tidal tails/debris and displaced molecular gas reservoirs. Comparing the rest-frame J- band continuum (F444W) vs (i-J) color (F277W$-$F444W), we find a wide range of values, suggesting a $>$1-dex spread in stellar mass and a dust attenuation reddening of $\Delta A_{\mathrm{V}} > 1$ mag. The DSFG members exhibit varying dust sizes relative to the stellar emission, ranging from compact dusty cores to galaxy-wide emission. Resolved color maps of individual sources showing a spread as high as F277W$-$F444W$=2$ mag suggesting complex stellar-to-dust geometry. Although gas-rich mergers are identified in the core, the most red and dust emitting members are disks exhibiting clumpy structure indicating secular growth can drive these starburst events. Such a remarkable range in properties within this sample suggest DSFGs in protocluster core environments follow diverse evolutionary pathways towards their transition into quiescent, elliptical cluster galaxies.

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