Strong Field-to-Field Variation of Lyman alpha Nebulae Populations at z~2.3
arXiv:1008.2776 · doi:10.1088/0004-637X/719/2/1654
Abstract
Understanding the nature of distant Ly-alpha nebulae ("blobs") and connecting them to their present-day descendants requires constraining their number density, clustering, and large-scale environment. To measure these basic quantities, we conduct a deep narrowband imaging survey in four different fields, Chandra Deep Field South (CDFS), Chandra Deep Field North, and two COSMOS subfields, for a total survey area of 1.2deg^2. We discover 25 blobs at z=2.3 with Ly-alpha luminosities of 0.7-8x10^43 erg/s and isophotal areas of Aiso = 10-60 arcsec^2. The transition from compact Ly-alpha emitters (Aiso ~ a few arcsec^2) to extended blobs (Aiso > 10 arcsec^2) is continuous, suggesting a single family perhaps governed by similar emission mechanisms. Surprisingly, most blobs (16/25) are in one survey field, the CDFS. The six brightest, largest blobs with L > 1.5x10^43 erg/s and Aiso > 16 arcsec^2 lie only in the CDFS. These large, bright blobs have a field-to-field variance of sigma_v >~ 1.5 (150%) about their number density n ~ 1.0x10^-5 Mpc^-3. This variance is large, significantly higher than that of unresolved LAEs (sigma_v ~ 0.3 or 30%), and can adversely affect comparisons of blob number densities and luminosity functions among different surveys. We compare the statistics of our blobs with dark matter halos in a 1 Gpc/h cosmological N-body simulation. At z=2.3, the number density (n) implies that each bright, large blob could occupy a halo of M_halo > 10^13 Msun if most halos have detectable blobs. The predicted variance in n is consistent with that observed and corresponds to a bias of ~7. Blob halos lie at the high end of the halo mass distribution at z=2.3 and are likely to evolve into the ~10^14 Msun halos typical of galaxy clusters today. On larger scales of ~10 co-moving Mpc, blobs cluster where compact LAEs do, indicating that blobs lie in coherent, highly overdense structures.
18 pages, 13 figures, ApJ in press
References in corpus (9)
- The Cosmic Evolution Survey (COSMOS) -- Overview
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- The Subaru/XMM-Newton Deep Survey (SXDS). IV. Evolution of Lya Emitters from z=3.1 to 5.7 in the 1 deg^2 Field: Luminosity Functions and AGN
- Ly-alpha Emission-Line Galaxies at z = 3.1 in the Extended Chandra Deep Field South
- The Chandra Deep Protocluster Survey: Ly-alpha Blobs are powered by heating, not cooling
- Evidence for Cold Accretion onto a Massive Galaxy at High Redshift?
- The Overdense Environment of a Large Lyman-alpha Nebula at z~2.7
- A Keck/DEIMOS Spectroscopy of Lyman Alpha Blobs at Redshift z=3.1
- A z = 3 Lyman Alpha Blob Associated with a Damped Lyman Alpha System Proximate to its Background Quasar
Cited by in corpus (64)
- A cosmic web filament revealed in Lyman-alpha emission around a luminous high-redshift quasar
- Extended Lyman-alpha emission from cold accretion streams
- Observations of the Lyman- Universe
- HETDEX pilot survey for emission-line galaxies - I. Survey design, performance, and catalog
- Discovery of an Enormous Ly nebula in a massive galaxy overdensity at
- Diffuse Lyman Alpha Haloes around Lyman Alpha Emitters at z=3: Do Dark Matter Distributions Determine the Lyman Alpha Spatial Extents?
- The evolving slope of the stellar mass function at 0.6 <= z < 4.5 from deep WFC3 data
- The Subaru Ly-alpha blob survey: A sample of 100 kpc Ly-alpha blobs at z=3
- A New Population of High Redshift, Dusty Lyman-Alpha Emitters and Blobs Discovered by WISE
- Panoramic Survey of Lyman α Emitters at z=3.1
- Sizing up Lyman-alpha and Lyman Break Galaxies
- MApping the Most Massive Overdensities Through Hydrogen (MAMMOTH) I: Methodology
- Resolving the optical emission lines of Lya blob 'B1' at z=2.38: another hidden quasar
- Spatially Resolved Gas Kinematics within a Ly Nebula: Evidence for Large-scale Rotation
- The Diversity of Diffuse Ly Nebulae around Star-Forming Galaxies at High Redshift
- SILVERRUSH. II. First Catalogs and Properties of ~2,000 Lya Emitters and Blobs at z~6-7 Identified over the 14-21 deg2 Sky
- A Deep Narrowband Imaging Search for CIV and He II Emission from Ly Blobs
- Lyman-alpha blobs: polarization arising from cold accretion
- Discovery of a Proto-cluster Associated with a Ly- Blob Pair at z=2.3
- An H-alpha search for over-dense regions at z=2.23
- Discovery of a faint, star-forming, multiply lensed, Lyman-alpha blob
- How Do Galaxies trace a large scale structure?: A case study around a massive protocluster at
- Kinematics of Gas in Lyman Alpha Nebulae
- Overturning the Case for Gravitational Powering in the Prototypical Cooling Lyman-alpha Nebula
- The Properties of Lyman Alpha Nebulae: Gas Kinematics from Non-resonant Lines
- Ly view around a z=2.84 hyperluminous QSO at a node of the cosmic web
- Deciphering Lyman blob 1 with deep MUSE observations
- Assembly of Massive Galaxies in a High-z Protocluster
- Overdensity of submillimeter galaxies around the MAMMOTH-1 nebula
- Ly Blobs from Cold Streams Undergoing Kelvin-Helmholtz Instabilities
- A Successful Broad-band Survey for Giant Lya Nebulae II: Spectroscopic Confirmation
- Surface Brightness Profile of Lyman- Halos out to 320 kpc in HETDEX
- Hubble Space Telescope Imaging of Lyman Alpha Emission at z=4.4
- Accelerated galaxy growth and environmental quenching in a protocluster at z=3.24
- Lyman-Alpha Emitter Galaxies at z ~ 2.8 in the Extended Chandra Deep Field-South: I. Tracing the Large-Scale Structure via Lyman-Alpha Imaging
- A Successful Broad-band Survey for Giant Lya Nebulae I: Survey Design and Candidate Selection
- ODIN: Where Do Lyman-alpha Blobs Live? Contextualizing Blob Environments within the Large-Scale Structure
- Extended Lyman-alpha emission from interacting galaxies at high redshifts
- About AGN ionization echoes, thermal echoes, and ionization deficits in low redshift Lyman-alpha blobs
- Evaluating Lya Emission as a Tracer of the Largest Cosmic Structure at z~2.47
- Constraining Dust and Molecular Gas Properties in Lyman Alpha Blobs at z~3
- Revisiting the Gas Kinematics in SSA22 Lyman- Blob 1 with Radiative Transfer Modeling in a Multiphase, Clumpy Medium
- Deep submillimeter and radio observations in the SSA22 field. I. Powering sources and Lyα escape fraction of Lyα blobs
- Extended and Filamentary Lyman Alpha Emission from the Formation of a Protogalactic Halo at z=2.63
- Pinpointing the Molecular Gas within a Lyman Alpha Blob at z ~ 2.7
- A Multiwavelength Study of ELAN Environments (AMUSE). Mass budget, satellites spin alignment and gas infall in a massive quasar host halo
- The cosmic web in Lyman-alpha emission
- What Makes Ly Nebulae Glow? Mapping the Polarization of LABd05
- What Powers Lyman alpha Blobs?
- Radiative Transfer in Lyα Nebulae: I. Modeling a Continuous or Clumpy Spherical Halo with a Central Source
- Where Outflows Meet Inflows: Gas Kinematics in SSA22 Lyman- Blob 2 Decoded by Advanced Radiative Transfer Modelling
- Ly-alpha Radiative Transfer: A Stokes Vector Approach to Ly-alpha Polarization
- 3D tomography of the giant Ly nebulae of 3--5 radio-loud AGN
- Mapping the Polarization of the Radio-Loud Ly Nebula B3 J2330+3927
- Polarization of Rayleigh scattered Lyα in active galactic nuclei
- Discovery of a protocluster core associated with an enormous Ly Nebula at
- C IV and He II Line Emission of Lyman Alpha Blobs: Powered by Shock Heated Gas
- A Search for Massive Galaxy Population in a Protocluster of LAEs at near the Radio Galaxy 53W002
- Understanding Lyman-alpha Nebulae at Low Redshift I: The Sizes, Powering, and Kinematics of "Green Bean" Galaxies
- Identifying clustering at high redshift through actively star-forming galaxies
- Modelling the Evolution of Ly Blobs and Ly Emitters
- Brighter and More Massive Galaxies in the Vicinity of Lyman-alpha Nebulae
- A Ly-alpha nebula at z~3.3
- ODIN: A New Lyman Alpha Blob Selection Method, Sample, and Statistical Analysis at