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29 results for “Globular cluster”

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zenodo20/100

X-ray Binary Luminosity Function Scaling Relations in Elliptical Galaxies: Evidence for Globular Cluster Seeding of Low-Mass X-ray Binaries in Galactic Fields

<p>Processed Chandra images, Chandra source catalog, and extended Figure 2 for Lehmer et al. (2020)</p>

opencc-by-4.0Apr 2020View details →
nasa20/100

47 Tuc Globular Cluster Chandra X-Ray Point Source Catalog (2005 Version)

The authors have detected 300 X-ray sources within the half-mass radius (2.79&#39;) of the globular cluster 47 Tucanae in a deep (281 ks) Chandra exposure. They perform photometry and simple spectral fitting for our detected sources and construct luminosity functions, X-ray color-magnitude, and color-color diagrams. Eighty-seven X-ray sources show variability on timescales from hours to years. Thirty-one of the new X-ray sources are identified with chromospherically active binaries from the catalogs of Albrow and coworkers (2001, &lt;a href="https://cdsarc.cds.unistra.fr/ftp/cats/J/ApJ/559/1060"&gt;CDS Catalog &lt;J/ApJ/559/1060&gt;&lt;/a&gt;). The authors estimate that the total number of neutron stars in 47 Tuc is of order 300, reducing the discrepancy between theoretical neutron star retention rates and observed neutron star populations in globular clusters. The data used in this paper are from the 2000 and 2002 Chandra observations of the globular cluster 47 Tuc. The 2000 observations, initially described in Grindlay et al. (2001, Science 292, 2290), were performed with the ACIS-I CCD array at the telescope focus, while the 2002 observations placed the back-illuminated ACIS-S aim point at the focus for maximum low-energy sensitivity. The authors combined the results from wavdetect source detection runs with a threshold probability of 1 x 10&lt;sup&gt;-5&lt;/sup&gt;, in two energy bands (0.5 - 2.0 keV and 0.5 - 6.0 keV for the 2000 observations, and (0.3 - 2.0 keV and 0.3 - 6.0 keV for the 2002 observations), to make independent source lists for the 2000 and 2002 observations, given in Tables 2 and 3 of the reference paper, which have been combined in the present HEASARC table. A total of 146 sources were detected in this way in the 2000 observations (entries with dataset_year = 2000), while 300 sources were detected in the 2002 observations (dataset_year = 2002). A total of 143 of the sources were clearly detected in both observations, while only three of the sources from the 2000 observations were not detected in the 2002 observations. See also the related &lt;a href="gc47tuccx2.html"&gt;2017 source catalog&lt;/a&gt;. This table was created by the HEASARC in June 2007 based on &lt;a href="https://cdsarc.cds.unistra.fr/ftp/cats/J/ApJ/625/796"&gt;CDS Catalog J/ApJ/625/796&lt;/a&gt; files table2.dat, table3.dat, and (part of) table5.dat. This is a service provided by NASA HEASARC .

restrictednotspecifiedApr 2025View details →
nasa20/100

Milky Way Globular Clusters Catalog (December 2010 Version)

This is the Catalog of Parameters for Milky Way Globular Clusters (December 2010 Version) that was compiled by William E. Harris of McMaster University. This is the first update since 2003 and the biggest single revision since the original version of the catalog published in 1996. The list now contains a total of 157 objects classified as globular clusters. Major upgrades have been made especially to the cluster coordinates, metallicities, and structural profile parameters, and the list of parameters now also includes the central velocity dispersion. This table contains basic parameters on distances, velocities, metallicities, luminosities, colors, and dynamical parameters for over 150 objects that are regarded as globular clusters in the Milky Way galaxy. Please acknowledge the use of this catalog in any published work you derive from it. The proper reference to the literature is the published paper (Harris, W.E. 1996, AJ, 112, 1487) which briefly describes the setup of the catalog. When you cite it in your text, please use &quot;Harris 1996 (2010 edition)&quot;. The author would also greatly appreciate receiving any new information, in published or preprint form, which would help him to keep the list up to date (contact W. E. Harris at harris@physics.mcmaster.ca). A full discussion of the sources used in the creation of this catalog and of the parameters that it contains can be found in the file: &lt;a href="http://physwww.mcmaster.ca/~harris/mwgc.ref"&gt;http://physwww.mcmaster.ca/~harris/mwgc.ref&lt;/a&gt;. This table was originally ingested by the HEASARC circa 1995. It was last updated by the HEASARC in February 2014 based on an electronic version (dated December 2010) copied from the file &lt;a href="http://physwww.mcmaster.ca/~harris/mwgc.dat"&gt;http://physwww.mcmaster.ca/~harris/mwgc.dat&lt;/a&gt;. This is a service provided by NASA HEASARC .

restrictednotspecifiedApr 2025View details →
nasa20/100

Omega Centauri Globular Cluster Chandra X-Ray Point Source Catalog

The authors analyzed a ~ 70 ks Chandra Advanced CCD Imaging Spectrometer (ACIS) exposure of the globular cluster Omega Cen (NGC 5139). The ~ 17&#39; x 17&#39; field of view fully encompasses three cluster core radii and almost twice the half-mass radius. They detected 180 sources to a limiting flux of ~ 4.3 x10 &lt;sup&gt;-16&lt;/sup&gt; erg/cm&lt;sup&gt;2&lt;/sup&gt;/s (L&lt;sub&gt;x&lt;/sub&gt; = 1.2 x 10&lt;sup&gt;30&lt;/sup&gt; erg/s at the 4.9 kpc distance to the cluster). After accounting for the number of active galactic nuclei and possible foreground stars among the detected X-ray sources, they estimate that 45-70 of the sources are cluster members. Four of the X-ray sources have previously been identified as accreting compact binaries in the cluster - three cataclysmic variables (CVs) and one quiescent neutron star. Correlating the Chandra positions with known variable stars yields 8 matches, of which 5 are probable cluster members that are likely to be binary stars with active coronae. Extrapolating these optical identifications to the remaining unidentified X-ray source population, the authors estimate that 20 - 35 of the sources are CVs and a similar number are active binaries. This likely represents most of the CVs in the cluster, but only a small fraction of all the active binaries. The authors place a 2-sigma upper limit of L&lt;sub&gt;x&lt;/sub&gt; &lt; 3 x 10&lt;sup&gt;30&lt;/sup&gt; erg/s on the integrated luminosity of any additional faint, unresolved population of sources in the core of the cluster. In their paper, they explore the significance of these findings in the context of primordial versus dynamical channels for CV formation. They note that the number of CVs per unit mass in Omega Cen is at least 2 - 3 times lower than in the field, suggesting that primordial binaries that would otherwise lead to CVs are being destroyed in the cluster environment. The authors obtained 2 exposures of Omega Cen using the imaging array of the Advanced CCD Imaging Spectrometer (ACIS-I) on 2000 January 24 - 25, in &quot;very faint&quot; (VF) mode. The total exposure time was 72.4 ks. The authors determined source counts using 95% encircled energy radii as determined from model PSFs, derived using the CIAO tool mkpsf at an intermediate energy of ~ 1.5 keV (the PSF shape being somewhat energy dependent). Counts were extracted in three bands: &quot;soft&quot; (0.5 - 1.5 keV), &quot;medium&quot; (0.5 - 4.5 keV), and &quot;hard&quot; (1.5 - 6.0 keV). The authors determined the background to subtract from each source by dividing the image into 1 arcminute-wide annuli centered on the aim point in chip 3 (the innermost &quot;annulus&quot; being a circle of radius 1.5 arcminutes). Background values adopted for sources in a given annulus were averages determined from several source-free regions within that annulus, after verifying that the background levels were azimuthally symmetric. For 12 sources ( source_numbers 11b, 12b, 13e, 22c, 32c, 41b, 41c, 84a, 84b, 84c, 93a, and 93b) that fell in the chip gaps or near the outer edge of a chip, background regions were chosen specifically to reflect these conditions. Local background determinations were also made for a small number of sources to the west of the cluster center that lie on or near a large diffuse X-ray source ~7 arcminutes west of the cluster center (see below). Following background subtraction, the authors applied aperture corrections and also corrected for reduced effective exposure times off-axis and in the chip gaps using the exposure map. This table was created by the HEASARC in June 2011 based on the electronic versions of Table 1 from the reference paper which was obtained from the CDS (their catalog J/ApJ/697/224 file table1.dat). This is a service provided by NASA HEASARC .

restrictednotspecifiedApr 2025View details →
nasa20/100

47 Tuc Globular Cluster Chandra X-Ray Point Source Catalog (2017 Version)

The authors combined Chandra ACIS observations of the globular cluster 47 Tucanae (47 Tuc) from 2000, 2002, and 2014-2015 to create a deeper X-ray source list and study some of the faint radio millisecond pulsars (MSPs) present in this cluster. This work combined 180 ks of new Chandra ACIS data on 47 Tuc with 370 ks of archival data and used improved algorithms to generate a new source catalog, finding 81 new sources for a total of 370 within the half-mass region (2.79 arcsec) of the cluster. The majority of the newly identified sources are in the crowded core region, indicating cluster membership. The authors associated five of the new X-ray sources with chromospherically active BY Dra or W UMa variables identified by Albrow et al. (2001, &lt;a href="https://cdsarc.cds.unistra.fr/ftp/cats/J/ApJ/559/1060"&gt;CDS Cat. &lt;J/ApJ/559/1060&gt;&lt;/a&gt;). See also the related &lt;a href="gc47tuccxo.html"&gt;2005 source catalog&lt;/a&gt;. This table was created by the HEASARC in September 2020 based upon the &lt;a href="https://cdsarc.cds.unistra.fr/ftp/cats/J/MNRAS/472/3706"&gt;CDS Catalog J/MNRAS/472/3706&lt;/a&gt; files table2.dat, table4.dat, and table5.dat. The optical names from Albrow et al. (2001) were subsequently corrected in October 2020 in order to use the recommendation from the CDS Dictionary of Nomenclature of Celestial Objects. This is a service provided by NASA HEASARC .

restrictednotspecifiedApr 2025View details →
nasa20/100

Omega Centauri Globular Cluster Chandra Deep Survey X-Ray Point Source Catalog

The authors identify 233 X-ray sources, of which 95 are new, in a 222-ks exposure of omega Centauri with the Chandra X-ray Observatory&#39;s Advanced CCD Imaging Spectrometer detector. The limiting unabsorbed flux in the core is f&lt;sub&gt;X&lt;/sub&gt;(0.5-6.0keV) ~= 3 x 10&lt;sup&gt;-16&lt;/sup&gt; erg/s/cm&lt;sup&gt;2&lt;/sup&gt; (L&lt;sub&gt;x&lt;/sub&gt; ~= 1 x 10&lt;sup&gt;30&lt;/sup&gt; erg/s at 5.2kpc). The authors estimate that ~60 +/- 20 of these are cluster members, of which ~30 lie within the core (r&lt;sub&gt;c&lt;/sub&gt; = 155 arcsec), and another ~30 between 1-2 core radii. They identify four new optical counterparts, for a total of 45 likely identifications. Probable cluster members include 18 cataclysmic variables (CVs) and CV candidates, one quiescent low-mass X-ray binary, four variable stars, and five stars that are either associated with omega Cen&#39;s anomalous red giant branch or are sub-subgiants. The authors estimate that the cluster contains 40 +/- 10 CVs with L_x_&gt; 10&lt;sup&gt;31&lt;/sup&gt; erg/s, confirming that CVs are underabundant in omega Cen relative to the field. Intrinsic absorption is required to fit X-ray spectra of six of the nine brightest CVs, suggesting magnetic CVs, or high-inclination systems. Though no radio millisecond pulsars (MSPs) are currently known in omega Cen, more than 30 unidentified sources have luminosities and X-ray colors like those of MSPs found in other globular clusters; these could be responsible for the Fermi-detected gamma-ray emission from the cluster. The authors identify a CH star as the counterpart to the second brightest X-ray source in the cluster and argue that it is a symbiotic star. This is the first such giant/white dwarf binary to be identified in a globular cluster. The data were obtained over two long exposures of omega Cen using the imaging array of the Chandra X-ray Observatory&#39;s ACIS-I on 2012 April 16 and 17. The data sets have a combined exposure time of ~222ks (173.7 and 48.5ks for ObsIDs 13726 and 13727, respectively). This table was created by the HEASARC in June 2018 based upon the &lt;a href="https://cdsarc.cds.unistra.fr/ftp/cats/J/MNRAS/479/2834"&gt;CDS Catalog J/MNRAS/479/2834&lt;/a&gt; file table1.dat. This is a service provided by NASA HEASARC .

restrictednotspecifiedApr 2025View details →
nasa20/100

Globular Cluster Systems of Galaxies Catalog

This table contains a catalog of 422 galaxies with published measurements of their globular cluster (GC) populations. Of these, 248 are E galaxies, 93 are S0 galaxies, and 81 are spirals or irregulars. Among various correlations of the total number of GCs with other global galaxy properties, the authors find that the number of globular clusters N&lt;sub&gt;GC&lt;/sub&gt; correlates well though nonlinearly with the dynamical mass of the galaxy bulge M&lt;sub&gt;dyn&lt;/sub&gt; = 4 sigma _e_&lt;sup&gt;2&lt;/sup&gt; R&lt;sub&gt;e&lt;/sub&gt;/G, where sigma&lt;sub&gt;e&lt;/sub&gt; is the central velocity dispersion and R&lt;sub&gt;e&lt;/sub&gt; the effective radius of the galaxy light profile. In their paper, the authors also present updated versions of the GC specific frequency S&lt;sub&gt;N&lt;/sub&gt; and specific mass S&lt;sub&gt;M&lt;/sub&gt; versus host galaxy luminosity and baryonic mass. These graphs exhibit the previously known U-shape: highest S&lt;sub&gt;N&lt;/sub&gt; or S&lt;sub&gt;M&lt;/sub&gt; values occur for either dwarfs or supergiants, but in the mid-range of galaxy size (10&lt;sup&gt;9&lt;/sup&gt; - 10&lt;sup&gt;10&lt;/sup&gt; L&lt;sub&gt;sun&lt;/sub&gt;) the GC numbers fall along a well-defined baseline value of S&lt;sub&gt;N&lt;/sub&gt; ~= 1 or S&lt;sub&gt;M&lt;/sub&gt; = 0.1, similar among all galaxy types. Along with other recent discussions, the authors suggest that this trend may represent the effects of feedback, which systematically inhibited early star formation at either very low or very high galaxy mass, but which had its minimum effect for intermediate masses. Their results strongly reinforce recent proposals that GC formation efficiency appears to be most nearly proportional to the galaxy halo mass M&lt;sub&gt;halo&lt;/sub&gt;. The mean &quot;absolute&quot; efficiency ratio for GC formation that the authors derive from the catalog data is M&lt;sub&gt;GCS&lt;/sub&gt;/M&lt;sub&gt;halo&lt;/sub&gt; = 6 x 10&lt;sup&gt;-5&lt;/sup&gt;. They suggest that the galaxy-to-galaxy scatter around this mean value may arise in part because of differences in the relative timing of GC formation versus field-star formation. Finally, they find that an excellent empirical predictor of total GC population for galaxies of all luminosities is N&lt;sub&gt;GC&lt;/sub&gt; ~ (R&lt;sub&gt;e&lt;/sub&gt; sigma&lt;sub&gt;e&lt;/sub&gt;)&lt;sup&gt;1.3&lt;/sup&gt;, a result consistent with fundamental plane scaling relations. This table was created by the HEASARC in February 2014 based on an electronic version of Table 1 from the reference paper which was obtained from the ApJ web site. A duplicate entry for NGC 4417 was removed in June 2019. This is a service provided by NASA HEASARC .

restrictednotspecifiedApr 2025View details →
nasa20/100

M 31 Globular Cluster Candidates Catalog

This database table contains a list of 288 globular cluster candidates and 132 miscellaneous objects found in a 70 arcminute square field centered on the M 31 (Andromeda) Galaxy. This is a service provided by NASA HEASARC .

restrictednotspecifiedApr 2025View details →
zenodo12/100

Multiple RHB Populations in Globular Clusters - AstroSat NUV Photometry of Modelled Stars

<p>This deposition consists of two datasets:</p> <ol> <li>RHBI.txt</li> <li>RHBII.txt</li> </ol> <p>These datasets contain the AstroSat UVIT photometry of&nbsp;18&nbsp;red horizontal branch (RHB)&nbsp;stars from the globular cluster NGC 2808, which were&nbsp;selected for modelling in the study titled &#39;&#39;Multiple RHB Populations in Globular Clusters&#39;&#39;. Each dataset contains the photometry of 9 stars (in 6 near-UV&nbsp;filters) belonging to one of&nbsp;the two&nbsp;RHB groups (RHBI and RHBII) present in NGC 2808.&nbsp;&nbsp;&nbsp;</p> <p>Each dataset contains the following columns:</p> <p>ID - The number/name of the source.</p> <p>XC, YC - Image&nbsp;coordinates&nbsp;</p> <p>RA, Dec&nbsp;- Right Ascension and Declination of the source in J2000 epoch.</p> <p>NF6, NF5, NF3, NF2, NF1 - Photometric magnitude (in ABmag) of source in the filters N279N, N263M, N245M, N219M and N242W respectively.&nbsp;</p> <p>ERRF6, ERRNF5, ERRNF3, ERRNF2, ERRNF1 - Error in photometric magnitude (in ABmag) of source in the filters N279N, N263M, N245M, N219M and N242W respectively.&nbsp;</p> <p>&nbsp;</p>

restrictedAug 2020View details →

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