Modeling the Anisotropic Tidal Effect on the Spin-Spin Correlations of Low-Mass Galactic Halos
Jounghun Lee (Seoul National University)

TL;DR
This paper introduces a new model for the anisotropic tidal effects on the spin-spin correlations of low-mass galactic halos, showing improved agreement with simulations over previous models and suggesting potential for dark matter studies.
Contribution
The paper develops a new formula incorporating anisotropic tidal effects to accurately model halo spin-spin correlations across a broad mass range.
Findings
The new model fits simulation data well across various halo masses.
Spin-spin correlations remain significant at large distances, beyond previous model predictions.
The results suggest potential for using halo spin alignments to probe dark matter properties.
Abstract
The halo spin-spin correlation function, , measures how rapidly the strength of the alignments of the spin directions between the neighbor halos change with the separation distance, . The previous model based on the tidal torque theory expresses the halo spin-spin correlation function as a power of the linear density two-point correlation function, , predicting in the linear regime and in the non-linear regime. Using a high-resolution N-body simulation, we show that the halo spin-spin correlation function in fact drops much less rapidly with than the prediction of the previous model, finding to be statistically significant even at Mpc on the dwarf galaxy scale. Claiming that the anisotropic tidal effect is responsible for the failure of the previous model, we propose a new formula for the halo spin-spin…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Cosmology and Gravitation Theories · Scientific Research and Discoveries
