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A robust measurement of the first higher-derivative bias of dark matter halos

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arxiv 1904.11294 v2 pith:PD47Q7ZZ submitted 2019-04-25 astro-ph.CO

classification astro-ph.CO
keywords biashalosmodesimulationsdarkdeltadensityfield
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abstract

We present a new simulation technique in which any chosen mode $\mathbf{k}$ of the density contrast field can be amplified by an amplitude $\Delta$. These amplified-mode simulations allow us to study the response of the halo density field to a long-wavelength mode other than the DC mode. In this sense they are a generalization of the separate-universe simulations to finite-wavelength modes. In particular, we use these simulations to obtain robust measurements of the first higher-derivative bias of dark matter halos $b_{\nabla^2 \delta}$. We find a negative bias at all mass considered, roughly following the $-R_L^2(M)$ relation, the Lagrangian radius of halos squared, as naively expected. We compare our results with those obtained from a fit to the 1-loop halo-matter power spectrum, as well as with the recent results from Abidi and Baldauf (2018), and to the prediction from the peak theory.

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Cited by 2 Pith papers

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

    Low-redshift galaxy clustering and CMB lensing tomography with hybrid effective field theory gives S8=0.79±0.06, consistent with Planck, while data alone prefer Ωm=0.245±0.024.

  2. GGI Lectures on Large-Scale Structure Perturbation Theory (Effective Field Theory)

    astro-ph.CO 2026-07 accept novelty 2.0 of 10

    Pedagogical notes derive large-scale-structure EFT from symmetries, covering SPT failures, BAO IR resummation, counterterms, galaxy bias, redshift-space distortions, and Lagrangian PT.

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