PHANGS–JWST First Results: Duration of the Early Phase of Massive Star Formation in NGC 628

Author:

Kim JaeyeonORCID,Chevance MélanieORCID,Kruijssen J. M. DiederikORCID,Barnes Ashley. T.ORCID,Bigiel FrankORCID,Blanc Guillermo A.ORCID,Boquien MédéricORCID,Cao YixianORCID,Congiu EnricoORCID,Dale Daniel A.ORCID,Egorov Oleg V.ORCID,Faesi Christopher M.ORCID,Glover Simon C. O.ORCID,Grasha KathrynORCID,Groves BrentORCID,Hassani HamidORCID,Hughes AnnieORCID,Klessen Ralf S.ORCID,Kreckel KathrynORCID,Larson Kirsten L.ORCID,Lee Janice C.ORCID,Leroy Adam K.ORCID,Liu DaizhongORCID,Longmore Steven N.ORCID,Meidt Sharon E.ORCID,Pan Hsi-AnORCID,Pety JérômeORCID,Querejeta MiguelORCID,Rosolowsky ErikORCID,Saito ToshikiORCID,Sandstrom KarinORCID,Schinnerer EvaORCID,Smith Rowan J.ORCID,Usero AntonioORCID,Watkins Elizabeth J.ORCID,Williams Thomas G.ORCID

Abstract

Abstract The earliest stages of star formation, when young stars are still deeply embedded in their natal clouds, represent a critical phase in the matter cycle between gas clouds and young stellar regions. Until now, the high-resolution infrared observations required for characterizing this heavily obscured phase (during which massive stars have formed, but optical emission is not detected) could only be obtained for a handful of the most nearby galaxies. One of the main hurdles has been the limited angular resolution of the Spitzer Space Telescope. With the revolutionary capabilities of the James Webb Space Telescope (JWST), it is now possible to investigate the matter cycle during the earliest phases of star formation as a function of the galactic environment. In this Letter, we demonstrate this by measuring the duration of the embedded phase of star formation and the implied time over which molecular clouds remain inert in the galaxy NGC 628 at a distance of 9.8 Mpc, demonstrating that the cosmic volume where this measurement can be made has increased by a factor of >100 compared to Spitzer. We show that young massive stars remain embedded for 5.1 1.4 + 2.7 Myr ( 2.3 1.4 + 2.7 Myr of which being heavily obscured), representing ∼20% of the total cloud lifetime. These values are in broad agreement with previous measurements in five nearby (D < 3.5 Mpc) galaxies and constitute a proof of concept for the systematic characterization of the early phase of star formation across the nearby galaxy population with the PHANGS–JWST survey.

Funder

Deutsche Forschungsgemeinschaft

EC ∣ European Research Council

ANID ∣ Fondo Nacional de Desarrollo Científico y Tecnológico

Agencia Nacional de Investigación y Desarrollo

Department of Education and Training ∣ Australian Research Council

ARC Centre of Excellence for All-Sky Astrophysics

Gouvernement du Canada ∣ Natural Sciences and Engineering Research Council of Canada

National Science Foundation

National Science and Technology Council of Taiwan

DAOISM grant

CNRS/INSU

Agencia Estatal de Investigacion

STFC ERF grant

Humboldt Research Award from the Alexander von Humboldt Foundation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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