Constraining the Thin Disc Initial Mass Function using Galactic Classical Cepheids
R. Mor (1), A.C. Robin (2), F. Figueras (1), B. Lemasle (3) ((1), Universitat de Barcelona (IEEC-UB), (2) Observatoire de Besan\c{c}on, (3), Astronomisches Rechen-Institut, Heidelberg)

TL;DR
This study constrains the Galactic thin disc's initial mass function using Classical Cepheids and Tycho-2 data, revealing a steeper IMF slope than the canonical value and ruling out a constant star formation history.
Contribution
First application of the Besançon Galaxy Model to Classical Cepheids, introducing new statistical methods to constrain the IMF in the Milky Way's thin disc.
Findings
IMF slope of 3.2 for intermediate masses, steeper than Salpeter
Constant star formation history is inconsistent with data
Results align with the Integrated Galactic IMF predictions
Abstract
Context: The Initial Mass Function (IMF) plays a crucial role on galaxy evolution and its implications on star formation theory make it a milestone for the next decade. It is in the intermediate and high mass ranges where the uncertainties of the IMF are larger. This is a major subject of debate and analysis both for Galactic and extragalactic science. Aims: Our goal is to constrain the IMF of the Galactic thin disc population using both Galactic Classical Cepheids and Tycho-2 data. Methods: For the first time the Besan\c{c}on Galaxy Model (BGM) has been used to characterise the Galactic population of the Classical Cepheids. We have modified the age configuration in the youngest populations of the BGM thin disc model to avoid artificial discontinuities in the age distribution of the simulated Cepheids. Three statistical methods, optimized for different mass ranges, have been developed…
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