The central velocity dispersion of the Milky Way bulge
E. Valenti, M. Zoccali, A. Mucciarelli, O.A. Gonzalez, F. Surot, Madrid, D. Minniti, M. Rejkuba, L. Pasquini, G. Fiorentino, G. Bono, R.M., Rich, M. Soto

TL;DR
This study refines the understanding of the Milky Way bulge's velocity dispersion peak by adding new, more uniformly distributed observations, confirming the peak's symmetry and extent, and providing improved measurement error estimates.
Contribution
It introduces new observations at positive latitudes to better constrain the bulge's velocity dispersion profile and offers analytical equations for velocity measurement errors based on metallicity and SNR.
Findings
Velocity dispersion peak reaches ~140 km/s at ~280 pc from the Galactic center.
The sigma peak is symmetric with respect to the Galactic plane.
Analytical equations for velocity measurement errors are provided.
Abstract
Recent spectroscopic and photometric surveys are providing a comprehensive view of the MW bulge stellar population properties with unprecedented accuracy. This in turn allows us to explore the correlation between kinematics and stellar density distribution, crucial to constraint the models of Galactic bulge formation. GIBS revealed the presence of a velocity dispersion peak in the central few degrees of the Galaxy by consistently measuring high velocity dispersion in three central most fields. Due to suboptimal distribution of these fields, all being at negative latitudes and close to each other, the shape and extension of the sigma peak is poorly constrained. In this study we address this by adding new observations distributed more uniformly and in particular including fields at positive latitudes that were missing in GIBS.MUSE observations were collected in four fields at…
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