University of Illinois at Urbana-Champaign
United States
His main research concerns Astrophysics, Galaxy, Dark energy, Astronomy and Redshift. His Astrophysics study deals with Cosmic microwave background intersecting with Neutrino. His Galaxy study incorporates themes from Data set and Geodesy.
His Dark energy research incorporates elements of COSMIC cancer database, Weak gravitational lensing and Planck. M. Carrasco Kind usually deals with Astronomy and limits it to topics linked to Library science and Near infrared light. M. Carrasco Kind has researched Redshift in several fields, including Galaxy cluster and Sigma.
M. Carrasco Kind mainly investigates Astrophysics, Dark energy, Galaxy, Redshift and Astronomy. His study in Astrophysics concentrates on Weak gravitational lensing, Supernova, Photometric redshift, Galaxy cluster and Milky Way. His work in Dark energy addresses issues such as Statistical physics, which are connected to fields such as Covariance matrix.
The Galaxy study combines topics in areas such as Cluster analysis, Dark matter and Photometry. His Redshift research focuses on subjects like Quasar, which are linked to Active galactic nucleus. His research in the fields of Solar System overlaps with other disciplines such as European research.
M. Carrasco Kind spends much of his time researching Astrophysics, Dark energy, Galaxy, Redshift and Weak gravitational lensing. His Dark energy study is concerned with the field of Cosmology as a whole. His study looks at the relationship between Galaxy and fields such as Sky, as well as how they intersect with chemical problems.
His work in Redshift tackles topics such as Spectrograph which are related to areas like Telescope. As a part of the same scientific family, M. Carrasco Kind mostly works in the field of Weak gravitational lensing, focusing on Dark matter and, on occasion, Satellite galaxy, Galaxy formation and evolution and Mass distribution. His biological study spans a wide range of topics, including Large Magellanic Cloud and Globular cluster.
His primary areas of investigation include Astrophysics, Dark energy, Galaxy, Redshift and Cosmology. M. Carrasco Kind combines subjects such as Sky, Trans-Neptunian object, Weak gravitational lensing, Magnitude and Stellar mass with his study of Dark energy. His Galaxy study which covers Photometry that intersects with Length scale.
His work on Hubble's law as part of general Redshift research is frequently linked to Omega, thereby connecting diverse disciplines of science. The study incorporates disciplines such as Smoothing, Photometric calibration and Sigma in addition to Cosmology. His Milky Way research incorporates themes from Large Magellanic Cloud, Dark matter and Dwarf galaxy.
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Dark Energy Survey year 1 results: Cosmological constraints from galaxy clustering and weak lensing
T. M. C. Abbott;F. B. Abdalla;A. Alarcon;J. Aleksić.
Physical Review D (2018)
The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. II. UV, Optical, and Near-IR Light Curves and Comparison to Kilonova Models
P. S. Cowperthwaite;E. Berger;V. A. Villar;B. D. Metzger.
arXiv: High Energy Astrophysical Phenomena (2017)
The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/Virgo GW170817. II. UV, Optical, and Near-infrared Light Curves and Comparison to Kilonova Models
P. S. Cowperthwaite;E. Berger;V. A. Villar;B. D. Metzger.
The Astrophysical Journal (2017)
A gravitational-wave standard siren measurement of the Hubble constant
B. P. Abbott;R. Abbott;T. D. Abbott;F. Acernese;F. Acernese.
Nature (2017)
Eight Ultra-faint Galaxy Candidates Discovered in Year Two of the Dark Energy Survey
A. Drlica-Wagner;K. Bechtol;E. S. Rykoff.
arXiv: Astrophysics of Galaxies (2015)
The Dark Energy Survey Data Release 1
T. M. C. Abbott;F. B. Abdalla;S. Allam;A. Amara.
arXiv: Instrumentation and Methods for Astrophysics (2018)
The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/Virgo GW170817. I. Dark Energy Camera Discovery of the Optical Counterpart
M. Soares-Santos;D. E. Holz;J. Annis;R. Chornock.
arXiv: High Energy Astrophysical Phenomena (2017)
Dark Energy Survey Year 1 results: cosmological constraints from cosmic shear
M. A. Troxel;N. MacCrann;N. MacCrann;J. Zuntz;T. F. Eifler.
Physical Review D (2018)
Searching for Dark Matter Annihilation in Recently Discovered Milky Way Satellites with Fermi-LAT
Fermi-LAT;Des Collaborations;A. Albert;B. Anderson.
arXiv: High Energy Astrophysical Phenomena (2016)
Eight Ultra-faint Galaxy Candidates Discovered in Year Two of the Dark Energy Survey
A. Drlica-Wagner;K. Bechtol;E. S. Rykoff;E. S. Rykoff;E. Luque.
The Astrophysical Journal (2015)
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