No Stream Left Unscathed: The imprint of a host galaxy

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Autores principales: Arora, Arpit, Ferguson, Peter S., Nibauer, Jacob, Shipp, Nora, Reddy, Videep, Vasiliev, Eugene, Kohm, Jack, Marin, Laurella C., Price-Whelan, Adrian M., Erkal, Denis, Pearson, Sarah, Wetzel, Andrew, Bailin, Jeremy, Feldmann, Robert
Formato: Preprint
Publicado: 2026
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author Arora, Arpit
Ferguson, Peter S.
Nibauer, Jacob
Shipp, Nora
Reddy, Videep
Vasiliev, Eugene
Kohm, Jack
Marin, Laurella C.
Price-Whelan, Adrian M.
Erkal, Denis
Pearson, Sarah
Wetzel, Andrew
Bailin, Jeremy
Feldmann, Robert
author_facet Arora, Arpit
Ferguson, Peter S.
Nibauer, Jacob
Shipp, Nora
Reddy, Videep
Vasiliev, Eugene
Kohm, Jack
Marin, Laurella C.
Price-Whelan, Adrian M.
Erkal, Denis
Pearson, Sarah
Wetzel, Andrew
Bailin, Jeremy
Feldmann, Robert
contents Stellar streams from disrupted globular clusters are excellent probes of dark matter (DM) subhalos. Observed Milky Way streams display a remarkable diversity of features: spurs, gaps, kinks, cocoons, and density variations, many attributed to subhalo encounters. But how much of this diversity arises from the host itself? We simulate $\sim$15,000 globular cluster streams across four Milky Way-mass halos from the FIRE-2 cosmological simulations, evolved in basis function expansion potentials capturing the evolving disk, halo, and large-scale structure while excluding small-scale perturbers such as DM subhalos and giant molecular clouds. We find that roughly three quarters of streams develop complex features from the host potential, such as spurs, kinks, and cocoon-like envelopes. Even the smoothest streams exhibit 10--25\% width variation along their track and host overdensities and gaps at scales of ${\sim}2^\circ$, squarely in the $1^\circ$--$5^\circ$ range predicted for subhalo-induced gaps. Pericentric distance is the primary predictor of stream morphology, with ${\sim}15$ kpc separating smooth from disturbed streams and circular orbits beyond $\sim$20 kpc producing the smoothest streams. Only $\sim$70 out of $\sim$15,000 streams are free of detectable wiggles in the track at any scale. Analogs to observed features, such as the GD-1 spur and the ATLAS--Aliqa Uma kink, emerge even without the presence of subhalos. As next-generation surveys (LSST, Euclid, and Roman) resolve stream structure across hundreds of streams, the baseline established here, streams evolved without small-scale perturbers, becomes essential for extracting DM substructure constraints.
format Preprint
id arxiv_https___arxiv_org_abs_2605_16200
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle No Stream Left Unscathed: The imprint of a host galaxy
Arora, Arpit
Ferguson, Peter S.
Nibauer, Jacob
Shipp, Nora
Reddy, Videep
Vasiliev, Eugene
Kohm, Jack
Marin, Laurella C.
Price-Whelan, Adrian M.
Erkal, Denis
Pearson, Sarah
Wetzel, Andrew
Bailin, Jeremy
Feldmann, Robert
Astrophysics of Galaxies
Stellar streams from disrupted globular clusters are excellent probes of dark matter (DM) subhalos. Observed Milky Way streams display a remarkable diversity of features: spurs, gaps, kinks, cocoons, and density variations, many attributed to subhalo encounters. But how much of this diversity arises from the host itself? We simulate $\sim$15,000 globular cluster streams across four Milky Way-mass halos from the FIRE-2 cosmological simulations, evolved in basis function expansion potentials capturing the evolving disk, halo, and large-scale structure while excluding small-scale perturbers such as DM subhalos and giant molecular clouds. We find that roughly three quarters of streams develop complex features from the host potential, such as spurs, kinks, and cocoon-like envelopes. Even the smoothest streams exhibit 10--25\% width variation along their track and host overdensities and gaps at scales of ${\sim}2^\circ$, squarely in the $1^\circ$--$5^\circ$ range predicted for subhalo-induced gaps. Pericentric distance is the primary predictor of stream morphology, with ${\sim}15$ kpc separating smooth from disturbed streams and circular orbits beyond $\sim$20 kpc producing the smoothest streams. Only $\sim$70 out of $\sim$15,000 streams are free of detectable wiggles in the track at any scale. Analogs to observed features, such as the GD-1 spur and the ATLAS--Aliqa Uma kink, emerge even without the presence of subhalos. As next-generation surveys (LSST, Euclid, and Roman) resolve stream structure across hundreds of streams, the baseline established here, streams evolved without small-scale perturbers, becomes essential for extracting DM substructure constraints.
title No Stream Left Unscathed: The imprint of a host galaxy
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2605.16200