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Gaia has revealed a clear signal of disequilibrium in the solar neighborhood in the form of a spiral (or snail) feature in the vertical phase-space distribution. We investigate the possibility that this structure emerges from ongoing…

星系天体物理 · 物理学 2025-01-30 Daniel Gilman , Jo Bovy , Neige Frankel , Andrew Benson

The distribution of stars in the Milky Way disc shows a spiral structure--the Snail--in the space of velocity and position normal to the Galactic mid-plane. The Snail appears as straight lines in the vertical frequency--vertical phase plane…

星系天体物理 · 物理学 2023-04-05 Neige Frankel , Jo Bovy , Scott Tremaine , David W. Hogg

The Galaxy is found to be in disequilibrium based on recent findings of the North/South (N/S) asymmetry and the phase mixing signatures, such as a phase spiral (snail) structure in the vertical phase space ($z-V_{z}$). We show that the N/S…

星系天体物理 · 物理学 2022-09-14 Rui Guo , Juntai Shen , Zhao-yu Li , Chao Liu , Shude Mao

The perturbation mechanism of the Galactic disk has puzzled us for a long time. The imprints from perturbations provide important diagnostics on the disk formation and evolution. Here we try to constrain when the vertical perturbation took…

星系天体物理 · 物理学 2018-10-10 Hai-Jun Tian , Chao Liu , Yue Wu , Mao-Sheng Xiang , Yong Zhang

The Gaia snail is a spiral feature in the distribution of solar-neighbourhood stars in position and velocity normal to the Galactic midplane. The snail probably arises from phase mixing of gravitational disturbances that perturbed the disc…

星系天体物理 · 物理学 2023-03-01 Scott Tremaine , Neige Frankel , Jo Bovy

The distribution of chemical elements in the Galactic disc can reveal fundamental clues on the physical processes that led to the current configuration of our Galaxy. We map chemical azimuthal variations in the disc using individual stellar…

星系天体物理 · 物理学 2024-12-25 M. Barbillon , A. Recio-Blanco , E. Poggio , P. A. Palicio , E. Spitoni , P. de Laverny , G. Cescutti

In 2018, the ESA \Gaia\ satellite discovered a remarkable spiral pattern ("phase spiral") in the $z-V_z$ phase plane throughout the solar neighbourhood, where $z$ and $V_z$ are the displacement and velocity of a star perpendicular to the…

星系天体物理 · 物理学 2021-03-17 Joss Bland-Hawthorn , Thor Tepper-Garcia

The phase spiral is a perturbation to the vertical phase-space distribution of stars in the Milky Way disk. We study the phase spiral's properties and how they vary with spatial position, in order to constrain its origin and evolution, as…

星系天体物理 · 物理学 2025-07-29 Axel Widmark , Kiyan Tavangar , Josh Kalish , Kathryn V. Johnston , Jason A. S. Hunt

The Gaia satellite revealed a remarkable spiral pattern ('phase spiral', PS) in the z-Vz phase-plane throughout the solar neighbourhood, where z and Vz are the displacement and velocity of a star perpendicular to the Galactic plane. As…

By combining the {\it LAMOST} and {\it Gaia} data, we investigate the vertical phase mixing across the Galactic disk. Our results confirm the existence of the phase space snail shells (or phase spirals) from 6 to 12 kpc. We find that…

星系天体物理 · 物理学 2021-04-28 Zhao-Yu Li

We test whether the spiral patterns apparent in many large disk galaxies should be thought of as dynamical features that are stationary in a co-rotating frame for > t_{dyn}, as implied by the density wave approach for explaining spiral…

宇宙学与河外天体物理 · 物理学 2015-05-28 Kelly Foyle , Hans-Walter Rix , Clare Dobbs , Adam Leroy , Fabian Walter

The density-wave theory of spiral structure proposes that star formation occurs in or near a spiral-shaped region of higher density that rotates rigidly within the galactic disk at a fixed pattern speed. In most interpretations of this…

We study the links between star formation history and structure for a large mass-selected galaxy sample at 0.05 < z_phot < 0.30. The galaxies inhabit a very broad range of environments, from cluster cores to the field. Using HST images, we…

Recent studies have shown that the passage of a massive satellite through the disk of a spiral galaxy can induce vertical wobbles in the disk and produce features such as in-plane rings and phase-space spirals. Here we analyze a…

星系天体物理 · 物理学 2019-07-10 Tim Haines , Elena D'Onghia , Benoit Famaey , Chervin Laporte , Lars Hernquist

Many approaches to galaxy dynamics assume that the gravitational potential is simple and the distribution function is time-invariant. Under these assumptions there are traditional tools for inferring potential parameters given observations…

The evolution of the Milky Way disk, which contains most of the stars in the Galaxy, is affected by several phenomena. For example, the bar and the spiral arms of the Milky Way induce radial migration of stars and can trap or scatter stars…

Gaia has revealed a variety of substructures in the phase space of stars in the Solar neighborhood, including the vertical `Snail' in $(z,v_z)$ space. Such substructures are often interpreted as the incompletely phase-mixed response of the…

星系天体物理 · 物理学 2025-10-22 Rimpei Chiba , Jupiter Ding , Chris Hamilton , Matthew W. Kunz , Scott Tremaine

We discuss the physical mechanism by which pure vertical bending waves in a stellar disc evolve to form phase space spirals similar to those discovered by Antoja et al. ( arXiv:1804.10196) in Gaia Data Release 2. These spirals were found by…

星系天体物理 · 物理学 2019-01-01 Keir Darling , Lawrence M. Widrow

Matter distribution models of the Milky Way galaxy are usually stationary, although there are known to be wave-like perturbations in the disc at $\sim10\%$ level of the total density. Modelling of the overall acceleration field by allowing…

星系天体物理 · 物理学 2021-08-18 Rain Kipper , Peeter Tenjes , Elmo Tempel , Roberto de Propris

Stellar chemical compositions can be altered by ingestion of planetary material and/or planet formation which removes refractory material from the proto-stellar disc. These "planet signatures" appear as correlations between elemental…

太阳与恒星天体物理 · 物理学 2024-03-21 Fan Liu , Yuan-Sen Ting , David Yong , Bertram Bitsch , Amanda Karakas , Michael T. Murphy , Meridith Joyce , Aaron Dotter , Fei Dai
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