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The hydrodynamic response of small-scale structure to reionization drives large IGM temperature fluctuations that persist to z = 4
Christopher Cain
,
Evan Scannapieco
, Matthew McQuinn
, Anson D’Aloisio
, Hy Trac
Earth and Space Exploration, School of (SESE)
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Dive into the research topics of 'The hydrodynamic response of small-scale structure to reionization drives large IGM temperature fluctuations that persist to z = 4'. Together they form a unique fingerprint.
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Keyphrases
Medium Temperature
100%
Intergalactic Medium
100%
Reionization
100%
Small-scale Structures
100%
Temperature Fluctuation
100%
Hydrodynamic Response
100%
Thermal Structure
33%
Spatial Resolution
33%
High-resolution
16%
X-ray
16%
Thermal History
16%
Ionized Gas
16%
Cold Gas
16%
Preliminary Estimates
16%
Adiabatic Cooling
16%
Dark Matter Candidates
16%
Radiative Transfer Simulations
16%
Adiabatic Heating
16%
Physics
Reionization
100%
Intergalactic Medium
100%
Hydrodynamics
100%
Ionized Gas
33%
High Resolution
16%
Radiative Transfer
16%
Dark Matter
16%
Cold Gas
16%
Boundary Condition
16%
X Ray
16%
Biochemistry, Genetics and Molecular Biology
X Ray
100%
Drive
100%
Adiabaticity
100%