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Figuring Out Gas & Galaxies in Enzo (FOGGIE). IX: The Angular Momentum Evolution of Milky Way-like Galaxies and their Circumgalactic Gas

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arxiv 2409.17244 v1 pith:K47LGOJQ submitted 2024-09-25 astro-ph.GA

classification astro-ph.GA
keywords angulargalaxiesmomentumcircumgalacticdarkhaloorientationcentral
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We investigate the co-evolution of the angular momentum of Milky Way-like galaxies, their circumgalactic gas, and their dark matter halos using zoom-in simulations from the Figuring Out Gas & Galaxies in Enzo (FOGGIE) suite. We examine how the magnitude and orientation of the angular momentum varies over time within the halo and between the components of mass. From z~2 to today, and in general across the simulated halos, the specific angular momenta of the central galaxies and the cool gas in their circumgalactic media (T < 10^5 K) increase together. Over that same period, the specific angular momenta of the hot (>10^6 K) and dark components of the halo change minimally. By z~1, the central galaxies have generally lost association with the angular momentum of their full dark matter halo -- both in magnitude and orientation. We find a wide distribution of angular momentum orientations in the halo, varying by up to 180 degrees over small (~tens of kpc) scales and between the different components of mass. The net angular momenta of the galaxies, their circumgalactic gas, and their dark matter halos are generally misaligned with one another at all cosmic times. The present-day orientation of the central galaxies are established at late times (after z=1), after the rates of cosmic accretion and mergers decline and the disks are able to settle and stabilize their orientation.

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Cited by 2 Pith papers

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

  1. Figuring Out Gas & Galaxies In Enzo (FOGGIE). XIV. The Observability of Emission from Accretion and Feedback in the Circumgalactic Medium with Current and Future Instruments

    astro-ph.GA 2025-11 conditional novelty 6.0 of 10

    Sensitivity, not sharpness, is the main limit on detecting circumgalactic gas in emission, and separating inflow from outflow needs ~30 km/s velocity resolution.

  2. The Formation of Dwarf Galaxy Disks

    astro-ph.GA 2025-10 conditional novelty 5.0 of 10

    In 39 simulated isolated dwarfs, extended galaxies grow via merger-built stellar disks that form from high-angular-momentum gas-rich satellites.

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