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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
verification ladder T0 review T1 audit T2 compute T3 formal
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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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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Tracing the kinematic perturbations of the Milky Way spiral arms with APOGEE DR17 and Gaia DR3

    astro-ph.GA 2026-05 unverdicted novelty 6.0 of 10

    A revised steady-state radial-velocity response model with both V_R,sin and V_R,cos terms constrains the Milky Way's two-armed spiral to a pitch angle of ~10° and local density contrast of 5-18% at the solar radius.

  2. Tracing the kinematic perturbations of the Milky Way spiral arms with APOGEE DR17 and Gaia DR3

    astro-ph.GA 2026-05 unverdicted novelty 6.0 of 10

    Revised radial-velocity response model including V_R,sin and V_R,cos applied to Milky Way kinematic data constrains spiral pitch angle to ~10°, density contrast 5-18%, and pattern speed 10-20 km/s/kpc.

  3. 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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