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The Great Wave: Evidence of a large-scale vertical corrugation propagating outwards in the Galactic disc

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arxiv 2407.18659 v2 pith:YRPPGGDG submitted 2024-07-26 astro-ph.GA astro-ph.SR

classification astro-ph.GAastro-ph.SR
keywords verticalgalacticdisccorrugationcircgalactocentricstarswave
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abstract

We analyse the three-dimensional structure and kinematics of two samples of young stars in the Galactic disc, containing respectively young giants ($\sim$17$\, $000 stars out to heliocentric distances of $\sim$7 kpc) and classical Cepheids ($\sim$3400 stars out to heliocentric distances of $\sim$15 kpc). The vertical structure of the two samples exhibit a consistent shape of the Milky Way's warp, whose amplitude reaches $\sim$700 pc at a Galactocentric radius R $\sim$ 14 kpc. Moreover, both samples show evidence of a large-scale vertical corrugation on top of the warp with a vertical height of $\sim$150-200 pc, extending over a large portion of the Galactic disc between Galactocentric radii $R \sim$ 10-12 kpc in the third Galactic quadrant (galactic longitudes $180^\circ < l < 270^\circ$) and $\sim$12-14 kpc in the second Galactic quadrant ($90^\circ < l < 180^\circ$). Its total length is at least 10 kpc and can possibly reach $\sim$ 20 kpc with the Cepheid sample. The stars in the corrugation exhibit both radial and vertical systematic motions, with Galactocentric radial velocities towards the outer disc of about 10-15 km/s. In the vertical motions, once the warp signature is subtracted, the residuals show a large-scale feature of systematically positive vertical velocities, which is shifted to slightly larger Galactocentric radii with respect to the spatial vertical corrugation (with a phase difference of roughly $\pi/2$), indicating an oscillatory behaviour. A comparison of the observed shift with a simple toy model suggests that the corrugation can be interpreted as a wave propagating towards the outer disc. The wave mapped in this work is located at larger heliocentric distances compared to the Radcliffe wave, a $\sim$2.7 kpc filament of dense gas clouds close to the Sun, and exhibits a larger coverage of the Galactic disc.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 6 citations worldwide. Full citation record

  1. Ripples spreading across the Galactic disc. Interplay of direct and indirect effects of the Sagittarius dwarf impact

    astro-ph.GA 2025-01 conditional novelty 7.0 of 10

    Satellite impacts excite the disc's bending mode directly and its breathing mode indirectly via tidally induced spiral arms, with a measurable delay that dates the Sagittarius perturbation to more than 400 Myr ago.

  2. A Detailed Analysis of the Milky Way Warp Based on Classical Cepheids

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    The Milky Way warp is described by a power-law height with a twisting line of nodes and a slow prograde precession rate of 4.86 ± 2.3 km/s/kpc, unified into one time-dependent model.

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