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Title: Growth of Cosmic Structure: Probing Dark Energy Beyond Expansion

Abstract

The quantity and quality of cosmic structure observations have greatly accelerated in recent years, and further leaps forward will be facilitated by imminent projects. These will enable us to map the evolution of dark and baryonic matter density fluctuations over cosmic history. The way that these fluctuations vary over space and time is sensitive to several pieces of fundamental physics: the primordial perturbations generated by GUT-scale physics; neutrino masses and interactions; the nature of dark matter and dark energy. We focus on the last of these here: the ways that combining probes of growth with those of the cosmic expansion such as distance-redshift relations will pin down the mechanism driving the acceleration of the Universe.

Authors:
 [1];  [2];  [3];  [4];  [5];  [6];  [1];  [7];  [7];  [8];  [9];  [10];  [11];  [8];  [12];  [13];  [14];  [10];  [14];  [15] more »;  [16] « less
  1. University of Michigan, Department of Physics Ann Harbor, MI (United States)
  2. UC Irvine, Department of Physics and Astronomy, CA (United States)
  3. Cornell University, Department of Astronomy, Ithaca, NY (United States)
  4. University of Washington, Department of Astronomy, Seattle, WA (United States)
  5. University of Utah, Department of Physics & Astronomy, Salt Lake City, UT (United States)
  6. Fermi National Accelerator Laboratory, Fermilab Center for Particle Astrophysics, Batavia, IL (United States); University of Chicago, Department of Physics & Astrophysics, Chicago, IL (United States)
  7. University of Pennsylvania, Department of Physics and Astronomy, Philadelphia, PA (United States)
  8. Lawrence Berkeley National Laboratory, Physics Division, Berkeley, CA (United States)
  9. Carnegie Mellon University, Department of Physics, Pittsburgh, PA (United States)
  10. Brookhaven National Laboratory (BNL), Upton, NY (United States)
  11. California Institute of Technology, NASA Jet Propulsion Laboratory, Pasadena, CA (United States)
  12. SLAC National Accelerator Laboratory (SLAC), Menlo Park, CA (United States)
  13. Princeton University, Department of Astrophysical Sciences, Princeton, NJ (United States); Max-Planck-Insitute for Astrophysics, Garching (Germany)
  14. Stony Brook University, NY (United States)
  15. University of Michigan, Department of Physics, Ann Harbor, MI (United States)
  16. Chinese Academy of Science, National Astronomy Observatories, Beijing (China)
Publication Date:
Research Org.:
Brookhaven National Laboratory (BNL), Upton, NY (United States); Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States); Fermi National Accelerator Laboratory (FNAL), Batavia, IL (United States); SLAC National Accelerator Laboratory (SLAC), Menlo Park, CA (United States)
Sponsoring Org.:
USDOE Office of Science (SC), High Energy Physics (HEP)
OSTI Identifier:
1172080
Alternate Identifier(s):
OSTI ID: 1335008
Report Number(s):
BNL-107345-2015-JA; FERMILAB-PUB-13-439-A; arXiv:1309.5385
Journal ID: ISSN 0927-6505; KA2301020; TRN: US1500482
Grant/Contract Number:  
SC00112704; AC02-07CH11359
Resource Type:
Accepted Manuscript
Journal Name:
Astroparticle Physics
Additional Journal Information:
Journal Volume: 63; Journal ID: ISSN 0927-6505
Publisher:
Elsevier
Country of Publication:
United States
Language:
English
Subject:
79 ASTRONOMY AND ASTROPHYSICS; Cosmology; Large-scale structure; Dark energy

Citation Formats

Huterer, Dragan, Kirkby, David, Bean, Rachel, Connolly, Andrew, Dawson, Kyle, Dodelson, Scott, Evrard, August, Jain, Bhuvnesh, Jarvis, Michael, Linder, Eric, Mandelbaum, Rachel, May, Morgan, Raccanelli, Alvise, Reid, Beth, Rozo, Eduardo, Schmidt, Fabian, Sehgal, Neelima, Slosar, Anze, Van Engelen, Alex, Wu, Hao-Yi, and Zhao, Gongbo. Growth of Cosmic Structure: Probing Dark Energy Beyond Expansion. United States: N. p., 2014. Web. doi:10.1016/j.astropartphys.2014.07.004.
Huterer, Dragan, Kirkby, David, Bean, Rachel, Connolly, Andrew, Dawson, Kyle, Dodelson, Scott, Evrard, August, Jain, Bhuvnesh, Jarvis, Michael, Linder, Eric, Mandelbaum, Rachel, May, Morgan, Raccanelli, Alvise, Reid, Beth, Rozo, Eduardo, Schmidt, Fabian, Sehgal, Neelima, Slosar, Anze, Van Engelen, Alex, Wu, Hao-Yi, & Zhao, Gongbo. Growth of Cosmic Structure: Probing Dark Energy Beyond Expansion. United States. https://doi.org/10.1016/j.astropartphys.2014.07.004
Huterer, Dragan, Kirkby, David, Bean, Rachel, Connolly, Andrew, Dawson, Kyle, Dodelson, Scott, Evrard, August, Jain, Bhuvnesh, Jarvis, Michael, Linder, Eric, Mandelbaum, Rachel, May, Morgan, Raccanelli, Alvise, Reid, Beth, Rozo, Eduardo, Schmidt, Fabian, Sehgal, Neelima, Slosar, Anze, Van Engelen, Alex, Wu, Hao-Yi, and Zhao, Gongbo. Sat . "Growth of Cosmic Structure: Probing Dark Energy Beyond Expansion". United States. https://doi.org/10.1016/j.astropartphys.2014.07.004. https://www.osti.gov/servlets/purl/1172080.
@article{osti_1172080,
title = {Growth of Cosmic Structure: Probing Dark Energy Beyond Expansion},
author = {Huterer, Dragan and Kirkby, David and Bean, Rachel and Connolly, Andrew and Dawson, Kyle and Dodelson, Scott and Evrard, August and Jain, Bhuvnesh and Jarvis, Michael and Linder, Eric and Mandelbaum, Rachel and May, Morgan and Raccanelli, Alvise and Reid, Beth and Rozo, Eduardo and Schmidt, Fabian and Sehgal, Neelima and Slosar, Anze and Van Engelen, Alex and Wu, Hao-Yi and Zhao, Gongbo},
abstractNote = {The quantity and quality of cosmic structure observations have greatly accelerated in recent years, and further leaps forward will be facilitated by imminent projects. These will enable us to map the evolution of dark and baryonic matter density fluctuations over cosmic history. The way that these fluctuations vary over space and time is sensitive to several pieces of fundamental physics: the primordial perturbations generated by GUT-scale physics; neutrino masses and interactions; the nature of dark matter and dark energy. We focus on the last of these here: the ways that combining probes of growth with those of the cosmic expansion such as distance-redshift relations will pin down the mechanism driving the acceleration of the Universe.},
doi = {10.1016/j.astropartphys.2014.07.004},
journal = {Astroparticle Physics},
number = ,
volume = 63,
place = {United States},
year = {Sat Mar 15 00:00:00 EDT 2014},
month = {Sat Mar 15 00:00:00 EDT 2014}
}

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Response of Dark Matter Halos to Condensation of Baryons: Cosmological Simulations and Improved Adiabatic Contraction Model
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A dynamical model for the distribution of dark matter and gas in galaxy clusters
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The effects of baryon physics, black holes and active galactic nucleus feedback on the mass distribution in clusters of galaxies: Baryon physics in clusters of galaxies
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The Density Profiles of Massive, Relaxed Galaxy Clusters. i. the Total Density over Three Decades in Radius
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The Dependence of Dark Halo Clustering on Formation Epoch and Concentration Parameter
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The effects of galaxy formation on the matter power spectrum: a challenge for precision cosmology: Galaxy formation and the matter power spectrum
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The effect of gas physics on the halo mass function
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The effects of baryons on the halo mass function
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Cuspy no more: how outflows affect the central dark matter and baryon distribution in Λ cold dark matter galaxies: Galaxy cores in ΛCDM
journal, March 2012


Cusp-core transformations in dwarf galaxies: observational predictions
journal, January 2013

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Formation and evolution of X-ray clusters - A hydrodynamic simulation of the intracluster medium
journal, November 1990

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Galaxy Clusters in Hubble Volume Simulations: Cosmological Constraints from Sky Survey Populations
journal, July 2002

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Galaxy groups in the 2dFGRS: the group-finding algorithm and the 2PIGG catalogue
journal, March 2004


Mock Catalogs for the DEEP2 redshift survey
journal, June 2004

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Constructing mock catalogues for the REFLEX II galaxy cluster sample: Mock catalogues for the REFLEX II sample
journal, August 2012

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Generating mock data sets for large-scale Lyman-α forest correlation measurements
journal, January 2012

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MoLUSC: A Mock Local Universe Survey Constructor
journal, May 2008

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Improved mock Galaxy Catalogs for the Deep2 Galaxy Redshift Survey from Subhalo Abundance and Environment Matching
journal, August 2013

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Lightcone mock catalogues from semi-analytic models of galaxy formation – I. Construction and application to the BzK colour selection
journal, December 2012

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Mock galaxy redshift catalogues from simulations: implications for Pan-STARRS1
journal, May 2009


The clustering of galaxies in the SDSS-III Baryon Oscillation Spectroscopic Survey: a large sample of mock galaxy catalogues
journal, October 2012

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The WiggleZ Dark Energy Survey: Final data release and cosmological results
journal, November 2012


SDSS data management and photometric quality assessment
journal, October 2004

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An Improved Photometric Calibration of the Sloan Digital Sky Survey Imaging Data
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Evidence of the accelerated expansion of the Universe from weak lensing tomography with COSMOS
journal, June 2010


Tomographic weak-lensing shear spectra from large N -body and hydrodynamical simulations
journal, June 2012


Cusp-core transformations in dwarf galaxies: observational predictions
journal, January 2013

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One gravitational potential or two? Forecasts and tests
journal, December 2011

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Measuring dark energy clustering with CMB-galaxy correlations
journal, December 2004


Combined analysis of the integrated Sachs-Wolfe effect and cosmological implications
journal, June 2008

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Constraining dark energy with clusters: Complementarity with other probes
journal, September 2009


Current constraints on the cosmic growth history
journal, April 2010


Asymmetric beams and CMB statistical anisotropy
journal, May 2010


Accounting for baryons in cosmological constraints from cosmic shear
journal, February 2013


Hydrodynamical N -body simulations of coupled dark energy cosmologies
journal, April 2010


Simulating the Universe with MICE: the abundance of massive clusters
journal, April 2010

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The effects of baryons on the halo mass function
journal, May 2012


Weak Gravitational Lensing by Large-Scale Structure
journal, September 2003


ACTPol: A polarization-sensitive receiver for the Atacama Cosmology Telescope
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The effects of galaxy formation on the matter power spectrum: A challenge for precision cosmology
text, January 2011


Sample variance in photometric redshift calibration: cosmological biases and survey requirements
text, January 2011


Early Dark Energy Cosmologies
text, January 2006


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