On the Spatial Correlations of Lyman Break Galaxies
arXiv:astro-ph/0305342 · doi:10.1086/376823
Abstract
Motivated by the observed discrepancy between the strong spatial correlations of Lyman break galaxies (LBGs) and their velocity dispersions, we consider a theoretical model in which these starbursting galaxies are associated with dark matter halos that experience appreciable infall of material. We show using numerical simulation that selecting halos that substantially increase in mass within a fixed time interval introduces a ``temporal bias'' which boosts their clustering above that of the underlying population. If time intervals consistent with the observed LBGs star formation rates of 50 solar masses per year are chosen, then spatial correlations are enhanced by up to a factor of two. These values roughly correspond to the geometrical bias of objects three times as massive. Thus, it is clear that temporal biasing must be taken into account when interpreting the properties of Lyman break galaxies.
5 Pages, 2 Figures, Accepted for Publication in ApJ Letters
References in corpus (1)
Cited by in corpus (28)
- Modeling Luminosity-Dependent Galaxy Clustering Through Cosmic Time
- Subaru Deep Survey V. A Census of Lyman Break Galaxies at z=4 and 5 in the Subaru Deep Fields: Photometric Properties
- Clustering of Submillimeter-Selected Galaxies
- Quasar Feedback: the Missing Link in Structure Formation
- Subaru Deep Survey VI. A Census of Lyman Break Galaxies at z=4 and 5 in the Subaru Deep Fields: Clustering Properties
- The Rest-Frame Optical Properties of SCUBA Galaxies
- Do submillimeter galaxies really trace the most massive dark matter halos? Discovery of a high-z cluster in a highly active phase of evolution
- The Clustering of Massive Halos
- The Varied Fates of z~2 Star-forming Galaxies
- Quasars: What turns them off?
- Dark matter halo abundances, clustering and assembly histories at high redshift
- The Formation Histories of Galaxy Clusters
- A Confirmation of the Strong Clustering of Distant Red Galaxies at 2 < z <3
- Testing Subhalo Abundance Matching in Cosmological Smoothed Particle Hydrodynamics Simulations
- A Brighter Past: Galaxy Luminosity Function At High Redshifts
- The Clustering and Host Halos of Galaxy Mergers at High Redshift
- Where are the z=4 Lyman Break Galaxies? Results from Conditional Luminosity Function Models of Luminosity-dependent Correlation Functions
- Pair Correlations and Merger Bias
- A Physical Model of Lyman Alpha Emitters
- Evidence for Merger-Driven Activity in the Clustering of High Redshift Quasars
- Verifying the Identity of High-Redshift Massive Galaxies Through the Clustering of Lower Mass Galaxies Around Them
- Close Pairs as Proxies for Galaxy Cluster Mergers
- Toward an Improved Analytical Description of Lagrangian Bias
- Source Mergers and Bubble Growth During Reionization
- Light-Cone Distortion of the Clustering and Abundance of Massive Galaxies at High-Redshifts
- On merger bias and the clustering of quasars
- Predicting the Merger Fraction of Lyman alpha Emitters from Redshift z~3 to z~7
- The Herschel-SPIRE Legacy Survey (HSLS): the scientific goals of a shallow and wide submillimeter imaging survey with SPIRE