Universal at last? The splashback mass function of dark matter halos
arXiv:2007.10346 · doi:10.3847/1538-4357/abbf52
Abstract
The mass function of dark matter halos is one of the most fundamental statistics in structure formation. Many theoretical models (such as Press-Schechter theory) are based on the notion that it could be universal, meaning independent of redshift and cosmology, when expressed in the appropriate variables. However, simulations exhibit persistent non-universalities in the mass functions of the virial mass and other commonly used spherical overdensity definitions. We systematically study the universality of mass functions over a wide range of mass definitions, for the first time including the recently proposed splashback mass, Msp. We confirm that, in LambdaCDM cosmologies, all mass definitions exhibit varying levels of non-universality that increase with peak height and reach between 20% and 500% at the highest masses we can test. Mvir, M200m, and Msp exhibit similar levels of non-universality. There are, however, two regimes where the splashback mass functions are significantly more universal. First, they are universal to 10% at z<2, whereas spherical overdensity definitions experience an evolution due to dark energy. Second, when additionally considering self-similar cosmologies with extreme power spectra, splashback mass functions are remarkably universal (to between 40% and 60%) whereas their spherical overdensity counterparts reach non-universalities between 180% and 450%. These results strongly support the notion that the splashback radius is a physically motivated definition of the halo boundary. We present a simple, universal fitting formula for splashback mass functions that accurately reproduces our simulation data.
15 pages, 7 figures. Small changes to match the published version
References in corpus (24)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Array Programming with NumPy
- The imprints of primordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects
- Transients from Initial Conditions in Cosmological Simulations
- Rotation-Dependent Catastrophic Disruption of Gravitational Aggregates
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- The halo mass function from the dark ages through the present day
- A universal model for halo concentrations
- Dark Energy Survey Year 1 Results: Cosmological Constraints from Cluster Abundances and Weak Lensing
- The Halo Mass Function: High-Redshift Evolution and Universality
- Splashback in accreting dark matter halos
- The Structure of Halos: Implications for Group and Cluster Cosmology
- Environmental dependence in the ellipsoidal collapse model
- Excursion Set Halo Mass Function and Bias in a Stochastic Barrier Model of Ellipsoidal Collapse
- Comments on the size of the simulation box in cosmological N-Body simulations
- How Accurately Can We Detect the Splashback Radius of Dark Matter Halos and its Correlation With Accretion Rate?
- Einasto Profiles and the Dark Matter Power Spectrum
- Dark Matter Halo Profiles in Scale-Free Cosmologies
- Cluster mass functions in the quintessential Universe
- On the implementation of the spherical collapse model for dark energy models
- Connecting the structure of dark matter haloes to the primordial power spectrum
- The Mass Function of Unprocessed Dark Matter Halos and Merger Tree Branching Rates
- Subhaloes in Scale-Free Cosmologies
- The halo mass function in alternative dark matter models
Cited by in corpus (45)
- Large-scale dark matter simulations
- Flybys, orbits, splashback: subhalos and the importance of the halo boundary
- The MillenniumTNG Project: An improved two-halo model for the galaxy-halo connection of red and blue galaxies
- Non-universality of the mass function: dependence on the growth rate and power spectrum shape
- CSST Cosmological Emulator I: Matter Power Spectrum Emulation with one percent accuracy to k = 10 h/Mpc
- Euclid: Effect of sample covariance on the number counts of galaxy clusters
- Orbital distribution of infalling satellite halos across cosmic time
- Evolution mapping: a new approach to describe matter clustering in the non-linear regime
- Virial halo mass function in the cosmology
- A Better Way to Define Dark Matter Haloes
- A physical and concise halo model based on the depletion radius
- Signatures of dark and baryonic structures on weakly lensed gravitational waves
- The BAHAMAS project: Evaluating the accuracy of the halo model in predicting the non-linear matter power spectrum
- The eROSITA Final Equatorial-Depth Survey (eFEDS) -- Splashback radius of X-ray galaxy clusters using galaxies from HSC survey
- The mass-size relation of galaxy clusters
- Can the splashback radius be an observable boundary of galaxy clusters?
- Tomography-based observational measurements of the halo mass function via the submillimeter magnification bias
- Galaxy flows within 8,000 km/s from Numerical Action methods
- Why are we still using 3D masses for cluster cosmology?
- Halo mass function in scale invariant models
- The infall region as a complementary probe to cluster abundance
- CSST Cosmological Emulator II: Generalized Accurate Halo Mass Function Emulation
- Dynamical cluster masses from photometric surveys
- Deep learning insights into non-universality in the halo mass function
- The Diffusion Coefficient of the Splashback Mass Function as a Probe of Cosmology
- Accurate halo mass functions from the simplest excursion set theory
- The Milky Way satellite galaxy Leo T: A perturbed cored dwarf
- GRMHD simulations of black hole accretion variabilities: Implications to hard state X-ray binary transients
- The stellar mass function of quiescent and star-forming galaxies and its dependence on morphology in COSMOS-Web
- Splashback radius and the mass accretion rate of RASS MCMF galaxy clusters
- Structure Formation with Warm White Noise: Effects of Finite Number Density and Velocity Dispersion in Particle and Wave Dark Matter
- The Splashback Mass Function in the Presence of Massive Neutrinos
- The mass and galaxy distribution around SZ-selected clusters
- Galaxy Cluster Mass Estimation Through The Splashback Radius
- Aemulus : Precision halo mass functions in wCDM cosmologies
- On the universality of the halo mass function beyond CDM cosmology
- DUCA: Dynamic Universe Cosmological Analysis. I. The halo mass function in dynamical dark energy cosmologies
- Iterative mean-field approach to the spherical collapse of dark matter halos
- Euclid preparation. L. Calibration of the linear halo bias in CDM cosmologies
- Universality of the halo mass function in modified gravity cosmologies
- Towards a universal model for the density profiles of dark matter haloes
- DUCA: Dynamic Universe Cosmological Analysis. II. The impact of clustering dark energy on the halo mass function
- A dynamics-based density profile for dark haloes. I. Algorithm and basic results
- AMICO galaxy clusters in KiDS-1000: Splashback radius from weak lensing and cluster-galaxy correlation function
- The Splashback Mass Function of Galaxy Clusters from Photometric Data