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Assembly bias and local Primordial non-Gaussianity from DESI DR1 Quasars

Published 12 Feb 2026 in astro-ph.CO | (2602.12357v1)

Abstract: The analysis of the large-scale clustering of quasars (QSO) observed by the Dark Energy Spectroscopic Instrument (DESI) represents a promising avenue for constraining local Primordial non-Gaussianity (PNG), parameterized by fNLf_{\rm NL}. The signal to be constrained is the scale-dependent bias induced in the 2-point clustering of the considered tracer sample. The resulting constraints on fNLf_{\rm NL}, however, are fully degenerate with the local PNG bias parameter bφb_φ, dependent on the assembly bias parameter pp. Using IllustrisTNG hydrodynamical simulations, we select a QSO sample reflecting the selection criteria and properties of DESI QSOs, and provide a robust prior for pp, and thus for bφb_φ, building on the findings of Fondi et al. 2024. We find a distribution with mean pˉ1.4\bar{p}\simeq1.4 with weak redshift dependence, stable to selection noise and consistent with the expected recent merger history typical of quasar-hosting halos. By comparing with the CAMELS simulations we demonstrate that this prior is robust to astrophysical assumptions and cosmic variance. Finally, applying this prior to the DESI DR1 dataset, we derive updated constraints on local PNG, obtaining fNL=3.3±9.2f_{\rm NL}=-3.3\pm9.2.

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