When the Milky Way turned off the lights: APOGEE provides evidence of star formation quenching in our Galaxy
M. Haywood, M. D. Lehnert, P. Di Matteo, O. Snaith, M. Schultheis, D., Katz, A. Gomez

TL;DR
The paper presents evidence that the Milky Way experienced a rapid, galaxy-wide quenching of star formation approximately 9 billion years ago, linked to its morphological transition and possibly related to bar formation.
Contribution
This study provides the first evidence of a galaxy-wide star formation quenching event in the Milky Way, occurring during its thick disk formation, and links it to morphological changes and bar formation.
Findings
Star formation rate dropped by an order of magnitude within 2 Gyr.
Quenching occurred during the transition from thick to thin disk.
Chemical continuity suggests quenching was not due to gas exhaustion.
Abstract
Quenching, the cessation of star formation, is one of the most significant events in the life cycle of galaxies. We show here the first evidence that the Milky Way experienced a generalised quenching of its star formation at the end of its thick disk formation 9 Gyr ago. Elemental abundances of stars studied as part of the APOGEE survey reveal indeed that in less than 2 Gyr the star formation rate in our Galaxy dropped by an order-of-magnitude. Because of the tight correlation between age and alpha abundance, this event reflects in the dearth of stars along the inner disk sequence in the [Fe/H]-[/Fe] plane. Before this phase, which lasted about 1.5 Gyr, the Milky Way was actively forming stars. Afterwards, the star formation resumed at a much lower level to form the thin disk. These events are very well matched by the latest observation of MW-type progenitors at high…
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