from first stars to (first) galaxiesmtrenti/site/slides/galaxies_lecture… · from first stars to...
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![Page 1: From First Stars to (First) Galaxiesmtrenti/Site/slides/Galaxies_Lecture… · From First Stars to (First) Galaxies. KAS16/MT Lecture2 IV - DarkLight. KAS16/MT Lecture3 IV - DarkLight](https://reader034.vdocument.in/reader034/viewer/2022042205/5ea758c1cda6e210ad18bc1e/html5/thumbnails/1.jpg)
From First Stars to (First) Galaxies
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KAS16/MT Lecture IV - DarkLight2
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KAS16/MT Lecture IV - DarkLight3
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KAS16/MT Lecture IV - DarkLight4
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KAS16/MT Lecture IV - DarkLight5
Smith et al. (2009)
n [cm-3]
T [K
]
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KAS16/MT Lecture IV - DarkLight6
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KAS16/MT Lecture IV - DarkLight
★Goal: Simplest meaningful model to understand evolution of galaxy formation
A model for galaxy formation
7
★Galaxies form within dark-matter halos
•Working hypothesis: Dark matter halo assembly main driver of star formation
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KAS16/MT Lecture IV - DarkLight
★L(Mh,z) depends on:
1. Stellar populations [young stars brighter]: Age(Mh,z)
2. Stellar mass: Mstar(Mh,z)
Our model for LF evolution
8
★DM halos populated by galaxies with UV luminosity L(Mh,z)
L(Mh,z)~Mstar/Age [with constant star-formation history]
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KAS16/MT Lecture IV - DarkLight
★Adopted galaxy “age”: DM halo assembly time
Galaxy ages
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★Rapid high-z assembly
★No free parameters
Mh/2 Mh
Halo assembly
time
Tacchella, Trenti & Carollo (2013) [MSc project]
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KAS16/MT Lecture IV - DarkLight
★Minimal assumption: Stellar mass does not depend on redshift: Mstar(Mh,z)
From halo to stellar mass
10
★Mstar(Mh) derived from single redshift calibration
Halo Mass [log Msun]
log(
Mst
ar/M
h)
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KAS16/MT Lecture IV - DarkLight
★Minimal assumption: Stellar mass does not depend on redshift: Mstar(Mh,z)
From halo to stellar mass
11
★Mstar(Mh) derived from single redshift calibration
Halo Mass [log Msun]
log(
Mst
ar/M
h)
★Luminosity defined at all z:
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KAS16/MT Lecture IV - DarkLight
Luminosity function evolution
12Tacchella, Trenti & Carollo (2013) [MSc project]
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KAS16/MT Lecture IV - DarkLight
Luminosity function evolution
13Tacchella, Trenti & Carollo (2013) [MSc project]
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KAS16/MT Lecture IV - DarkLight
Luminosity function evolution
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★Model successful from z=0 to z=10!
★Assumptions validated!Tacchella, Trenti & Carollo (2013) [MSc project]
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KAS16/MT Lecture IV - DarkLight
Luminosity function evolution
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★Validation from latest z~8-10 data
Mason, Trenti & Treu (2015)
★And predictions for z>10 [first 500 Myr]
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KAS16/MT Lecture IV - DarkLight
Stellar mass density evolution
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★Modeling based on galaxy light only
★Yet… Evolution of stellar mass density described extremely well
★Further confirmation that basic model captures essence of galaxy evolution
Mason, Trenti & Treu (2015)
Observations
Predictions
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KAS16/MT Lecture IV - DarkLight
Star formation history
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★Drivers of star formation:
★Halo mass function evolution (galaxy abundance)
★Halo assembly time (galaxy age)
More halos
Increased halo assembly time
Log
Star
form
atio
n ra
te [
Msu
n y
r -1
Mpc
-3]
Trenti et al. (2013)
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KAS16/MT Lecture IV - DarkLight
Summary
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★Dark Matter halo assembly key driver of star formation
★Basic model reproduces the evolution of the star formation history
★Halos at fixed mass at different redshift have similar stellar mass, but different luminosities because galaxy ages change