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C. Cacciari

Publications and source records attributed to C. Cacciari.

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The stellar population of the Globular Cluster M 3. II: CCD photometry of additional 10,000 stars

We present BVI CCD photometry for more than 10,000 stars in the innermost region (0.3' < r <~ 4') of the globular cluster M 3. When added to the previous photographic photometry by Buonanno et al. (1994) reaching as far as r ~ 7', this results in an homogeneous data-set including about 19,000 stars measured in this cluster, which can be now regarded as one of the main templates for stellar population studies. Our main results, from the new colour-magnitude diagrams (CMD), are: i) Completeness has been achieved for all objects at V<=18.6 and 0.3'<r<7'. ii) Our new independent photometric calibration is redder than the old calibration (Sandage and Katem 1982) in the blue range, and bluer in the reddest part of the CMD. This colour term has important consequences on some issues (e.g. metallicity, period-shift effect, etc.). iii) The metallicity derived from the photometric indicators (B-V)_{0,g} and ΔV_{1.4} is [Fe/H]~-1.45, i.e. significantly higher than the value -1.66 generally used so far. This is in very good agreement with the most recent high resolution spectroscopic studies of individual stars. iv) There is indication of the presence of a very faint and blue extension of the HB, although scarcely populated. v) The population ratios of HB,RGB and AGB stars confirm the value previously found for the helium content, i.e. Y=0.23+/-0.02. vi) There is a significant population of blue straggler stars, although the exact number must await HST data for a better resolution in the very central regions.

astro-ph

The \mv vs \fe Calibration: I. HST Color-Magnitude Diagrams of 8 Globular Clusters in M 31

Color Magnitude Diagrams (CMDs) of individual stars in 8 Globular Clusters in M31 down to about 1 mag fainter (V$\sim 26.5$) than the Horizontal Branch have been obtained with the Hubble Space Telescope. In particular, we observed G280 and G351 with the FOC (f/96+F430W, f/96+F480LP) while the WFPC2 (F555W,F814W) frames for G1,G58,G105,G108,G219+Bo468 were retrieved from the HST archive. The cluster metallicities -\fe- range from -1.8 to -0.4. Coupled with sufficiently accurate (to $\sim\pm0.1$ mag) measures of the mean brightness of the HB --\vhb--, appropriate estimates of reddening for each cluster, and the adoption of a distance modulus to M31 of \dmo = 24.43, this has allowed us to yield a direct calibration for the mean absolute magnitude of the HB at the instability strip --\mv-- with varying \fe: M_V^{HB} = (0.13 \pm 0.07)\fe + (0.95 \pm 0.09), where the associated errors result from the adopted global errors in the measure and best fitting procedures. The slope of the derived relation is fully consistent with that predicted by the standard and canonical models ($\sim0.15$) and obtained by various ground-based observations, while it is only marginally compatible with higher values ($\sim0.30$), also obtained in the past. The zero-point, which is crucial to absolute age determinations, depends on the adopted distance to M31 and is moreover affected by an additional error due to the residual uncertainties in the \hst photometric zero-points ($\sim0.05$ mag, at least). If confirmed, such a calibration of the \mv \vs \fe relationship would imply old absolute ages ($> 16$Gyr) for the oldest Galactic globulars and fairly small age spread among those having a constant magnitude difference between the Main-Sequence Turnoff and the HB.

astro-ph

The Young Globular Clusters of the Milky Way and the Local Group Galaxies: Playing With Great Circles

The small group of Galactic Globular Clusters (GGC) (Pal 12, Terzan 7, Ruprecht 106, Arp 2) recently discovered to be significantly younger (by ~3-4 Gyr) than the average cluster population of the Galaxy are shown to lie near planes passing in the vicinity of some satellite galaxies of the Milky Way and through the Galactic Centre itself. Assuming that these configurations represent a fossil record of interactions between the Galaxy and its companions from which these clusters originated, we identified, along one of them, another candidate ``young'' GGC, i.e. IC4499, whose Color-Magnitude Diagram is presented. Various hypotheses on the possible origin of ``young'' GGC are also briefly discussed within a framework where the location on preferential planes may be seen as a general characteristic for the Local Group members.

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HST Observations of Globular Clusters in M31.I:Surface Photometry of 13 Objects

We present the initial results of a study of globular clusters in M31, using the Faint Object Camera (FOC) on the Hubble Space Telescope (HST). The sample of objects consists of 13 clusters spanning a range of properties. Three inde- pendent image deconvolution techniques were used in order to compensate for the optical problems of the HST, leading to mutually fully consistent results. We present detailed tests and comparisons to determine the reliability and limits of these deconvolution methods, and conclude that high-quality surface photome- try of M31 globulars is possible with the HST data. Surface brightness profiles have been extracted, and core radii, half-light radii, and central surface brightness values have been measured for all of the clusters in the sample. Their comparison with the values derived from ground-based observations indi- cates the later to be systematically and strongly biased by the seeing effects, as it may be expected. A comparison of the structural parameters with those of the Galactic globulars shows that the structural properties of the M31 globu- lars are very similar to those of their Galactic counterparts. A candidate for a post-core-collapse cluster, Bo 343 = G 105, has been already identified from these data; this is the first such detection in the M31 g. c. system.

astro-ph