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Hubble Space Telescope reveals multiple Sub-Giant Branch in eight Globular Clusters

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arxiv 1208.1873 v1 pith:H4UCECSB submitted 2012-08-09 astro-ph.SR

classification astro-ph.SR
keywords differencemultiplepresencesplitbranchesclustersfaintglobular
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In the last few years many globular clusters (GCs) have revealed complex color-magnitude diagrams, with the presence of multiple main sequences (MSs), broaden or multiple sub-giant branches (SGBs) and MS turn offs, and broad or split red giant branches (RGBs). After a careful correction for differential reddening, high accuracy photometry with the Hubble Space Telescope presented in this paper reveals a broadened or even split SGB in five additional Milky Way GCs: NGC 362, NGC 5286, NGC 6656, NGC 6715, and NGC 7089. In addition, we confirm (with new and archival HST data) the presence of a split SGB in 47Tuc, NGC 1851, and NGC 6388. The fraction of faint SGB stars with respect to the entire SGB population varies from one cluster to another and ranges from $\sim$0.03 for NGC 362 to ~0.50 for NGC 6715. The average magnitude difference between the bright SGB and the faint SGB is almost the same at different wavelengths. This peculiarity is consistent with the presence of two groups of stars with either an age difference of about 1-2 Gyrs, or a significant difference in their overall C+N+O content.

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Cited by 3 Pith papers

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  1. The complex stellar system M 22: constraining the chemical enrichment from AGB stars using magnesium isotope ratios

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    First Mg isotope measurements at [Fe/H]≈-2 in a globular cluster show no difference tied to s-process enrichment, favoring ~2.75 M_sun AGB polluters and a 280–480 Myr age gap.

  2. The complex stellar system M 22: confirming abundance variations with high precision differential measurements

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    High-precision differential abundances confirm M 22 hosts a >0.24 dex iron spread and ~0.65 dex s-process spread, and reveal new internal abundance variations within each population.

  3. Globular Clusters in the Time of the JWST. I. Survey Design and First Results on Multiple Populations and Beyond

    astro-ph.GA 2026-06 unverdicted novelty 4.0 of 10

    JWST NIRCam survey of 11 globular clusters detects multiple populations in low-mass stars, showing discrete sequences in some clusters and continuous distributions or helium/oxygen variations in others, plus an M-dwar...

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