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December 2, 2025The Astrophysical Journal2 citationsOpen Access

ALMA-IMF. XX. Core Fragmentation in the W51 High-mass Star-forming Region

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AGAdam GinsburgJBJ. BraineMAM. Armante

Key Points

  • Core fragmentation is linked to the presence of compact sources in W51 star-forming region.
  • The trend shows that massive cores host more pre-/protostellar objects than smaller cores.
  • Observational analysis of data from ALMA highlights the differences between fragmented and unfragmented cores.
  • This work calls for further investigation into the formation processes of protostellar objects in high-mass cores.

Abstract

Abstract We present a study of core fragmentation in the W51-E and W51-IRS2 protoclusters in the W51 high-mass star-forming region. The identification of core fragmentation is achieved by the spatial correspondence of cores and compact sources, which are detected in the short- (low-resolution) and the long-baseline (high-resolution) continuum images from the Atacama Large Millimeter/submillimeter Array (ALMA) in Bands 3 (3 mm) and 6 (1.3 mm), respectively. We characterize the compact sources found in the long-baseline images, and conclude that the compact sources are pre-/protostellar objects (PPOs) that are either prestellar dust cores or dust disks or envelopes around protostars. The observed trend of core fragmentation in W51 is that (i) massive cores host more PPOs, (ii) bright PPOs are preferentially formed in massive cores, and (iii) equipartition of flux between PPOs is uncommon. The thermal Jeans masses of the parent cores are insufficient to explain the masses of their fragments, and this trend is more prominent for high-mass cores. We also find that unfragmented cores are large, less massive, and less dense than fragmented cores.

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Cite This Study

Ginsburg et al. (2025) studied this question.

synapsesocial.com/papers/692e3d706c9b3ab28c186de6https://doi.org/10.3847/1538-4357/ae0619
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1ALMA-IMF XX: Core fragmentation in the W51 high-mass star-forming region2025
  2. 2The ALMA-QUARKS Survey. III. Clump-to-core Fragmentation and Searches for High-mass Starless Cores2025 · 11 citations
  3. 3Digging into the Interior of Hot Cores with ALMA (DIHCA). IV. Fragmentation in High-mass Star-Forming Clumps2024
  4. 4The ALMA Survey of 70 $\mu$m Dark High-mass Clumps in Early Stages (ASHES). XI. Statistical Study of Early Fragmentation2024
  5. 5Fragmentation in the Serpens/Aquila Star-forming Region2026