皮诺曹中 nDGP 重力的实现

IF 5.3 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Journal of Cosmology and Astroparticle Physics Pub Date : 2024-07-30 DOI:10.1088/1475-7516/2024/07/093
Yanling Song, Bin Hu, Cheng-Zong Ruan, Chiara Moretti and Pierluigi Monaco
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引用次数: 0

摘要

本文利用 PINOCCHIO 算法研究了 Dvali-Gabadze-Porrati (nDGP)模型正常分支中暗物质结构的形成。我们首先提出了 nDGP 模型的二阶拉格朗日扰动理论,结果表明 nDGP 中的一阶和二阶增长函数比ΛCDM 中的要大。然后,我们研究了 nDGP 中的椭球坍缩动力学,由于引力相互作用的增强,nDGP 中的椭球坍缩比 ΛCDM 中的椭球坍缩加速。我们以 512 Mpc h-1 的盒大小和 10243 个粒子运行 nDGP-PINOCCHIO 代码,分析了输出光环星表的统计特性,包括光环功率谱和光环质量函数。校准后的 PINOCCHIO 光环功率谱与 N-体模拟的吻合度在 5%以内,即在红移 z=0 时,在移动波数范围 k<0.3 (h Mpc-1)。在累积光环质量函数方面,N-body 和 PINOCCHIO 的一致性也在模拟散度范围之内。
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An implementation of nDGP gravity in Pinocchio
In this paper we investigate dark matter structure formation in the normal branch of the Dvali-Gabadadze-Porrati (nDGP) model using the PINOCCHIO algorithm. We first present 2nd order Lagrangian perturbation theory for the nDGP model, which shows that the 1st- and 2nd-order growth functions in nDGP are larger than those in ΛCDM. We then examine the dynamics of ellipsoidal collapse in nDGP, which is accelerated compared to ΛCDM due to enhanced gravitational interactions. Running the nDGP-PINOCCHIO code with a box size of 512 Mpc h-1 and 10243 particles, we analyze the statistical properties of the output halo catalogs, including the halo power spectrum and halo mass function. The calibrated PINOCCHIO halo power spectrum agrees with N-body simulations within 5% in the comoving wavenumber range k<0.3 (h Mpc-1) at redshift z=0. The agreement is extended to smaller scales for higher redshifts. For the cumulative halo mass function, the agreement between N-body and PINOCCHIO is also within the simulation scatter.
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来源期刊
Journal of Cosmology and Astroparticle Physics
Journal of Cosmology and Astroparticle Physics 地学天文-天文与天体物理
CiteScore
10.20
自引率
23.40%
发文量
632
审稿时长
1 months
期刊介绍: Journal of Cosmology and Astroparticle Physics (JCAP) encompasses theoretical, observational and experimental areas as well as computation and simulation. The journal covers the latest developments in the theory of all fundamental interactions and their cosmological implications (e.g. M-theory and cosmology, brane cosmology). JCAP''s coverage also includes topics such as formation, dynamics and clustering of galaxies, pre-galactic star formation, x-ray astronomy, radio astronomy, gravitational lensing, active galactic nuclei, intergalactic and interstellar matter.
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