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September 17, 2025The Astrophysical Journal11 citationsOpen Access

SIDM Concerto: Compilation and Data Release of Self-interacting Dark Matter Zoom-in Simulations

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ENEthan O. NadlerDKDemao KongDYDaneng Yang

Key Points

  • Simulations show a 50% reduction in SIDM subhalo mass functions compared to cold dark matter in Milky Way systems.
  • Data reveals a peak in core-collapsed halos at a velocity transition from a v−4 to v0 scaling in self-interacting dark matter models.
  • Diversity in inner density profile slopes of subhalos is more pronounced in self-interacting dark matter than in cold dark matter.
  • Subhalo populations studied over seven mass decades provide benchmark data for astrophysical observations and predictions.

Abstract

Abstract We present SIDM Concerto: 14 cosmological zoom-in simulations in cold dark matter (CDM) and self-interacting dark matter (SIDM) models based on the Symphony and Milky Way-est suites. SIDM Concerto includes one Large Magellanic Cloud– (LMC-) mass system (host mass ∼10 11 M ⊙ ), two Milky Way (MW) analogs (∼10 12 M ⊙ ), two group-mass hosts (∼10 13 M ⊙ ), and one low-mass cluster (∼10 14 M ⊙ ). Each host contains ≈2 × 10 7 particles and is run in CDM and one or more strong, velocity-dependent SIDM models. Our analysis of SIDM (sub)halo populations over seven subhalo mass decades reveals that (1) the fraction of core-collapsed isolated halos and subhalos peaks at a maximum circular velocity corresponding to the transition of the SIDM cross section from a v −4 to v 0 scaling; (2) SIDM subhalo mass functions are suppressed by ≈50% relative to CDM in LMC, MW, and group-mass hosts but are consistent with CDM in the low-mass cluster host; (3) subhalos’ inner density profile slopes, which are more diverse in SIDM than in CDM, are sensitive to both the amplitude and shape of the SIDM cross section. Our simulations provide a benchmark for testing SIDM predictions with astrophysical observations of field and satellite galaxies, strong lensing systems, and stellar streams. Data products are publicly available at doi: 10.5281/zenodo.14933624 .

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Cite This Study

Nadler et al. (2025) studied this question.

synapsesocial.com/papers/68d45b2931b076d99fa5da4ehttps://doi.org/10.3847/1538-4357/adf553
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