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<html><head><title>Course page of Julien Lesgourgues</title>
<style type="text/css">
<!--
BODY {background-color: #191919;
color: #ffc000}
a {color: #ff4e00}
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</style></head><body>
<table width="100%">
<tbody><tr>
<td align="center">
<a href="index.html">
home
</a>
</td>
<td align="center">
<a href="presentation.html">
presentation
</a>
</td>
<td align="center">
courses
</td>
<td align="center">
<a href="codes.html">
codes
</a>
</td>
<td align="center">
<a href="events.html">
events
</a>
</td>
<td align="center">
<a href="outreach.html">outreach</a>
</td>
</tr>
</tbody></table>
<img src="images/v50.gif">
<br>
<h1 align="center">Lecture notes on Advanced Cosmology: version of the 20.06.2009</h1>
<br>
<table align="center" width="90%">
<tbody><tr>
<td>
<table>
<tbody><tr>
<td align="left">
<ul>
<li>
Chapter I: <a href="courses/EDPY/I.pdf" target="new">Brief recalls on homogeneous cosmology (11 pages)</a>
<table>
<tbody> <tr> <td align="left">
1. Introduction
<br>
2. Hubble radius, horizons and observable universe
<br>
3. Fourier expansion in flat FLRW universe
</tbody> </tr> </td>
</table>
</li>
<li>
Chapter II: <a href="courses/EDPY/II.pdf" target="new">Linearized gravity (15 pages)</a>
<table>
<tbody> <tr> <td align="left">
1. The gauge ambiguity
<br>
2. Mathematical definition of gauge transformations
<br>
3. Classification of metric perturbations
<br>
4. Linearized Einstein equations
</tbody> </tr> </td>
</table>
</li>
<li>
Chapter III: Inflation
<table>
<tbody> <tr> <td align="left">
1. <a href="courses/EDPY/III1.pdf" target="new">Motivations (5 pages)</a>
<br>
2. <a href="courses/EDPY/III2.pdf" target="new">Slow-roll conditions (2 pages)</a>
<br>
3. <a href="courses/EDPY/III3.pdf" target="new">Quantization and semi-classical transition (7 pages)</a>
<br>
4. <a href="courses/EDPY/III4.pdf" target="new">Tensor perturbations (13 pages)</a>
<br>
5. <a href="courses/EDPY/III5.pdf" target="new">Scalar perturbations (8 pages)</a> with summary of expressions for primordial spectra
</tbody> </tr> </td>
</table>
</li>
<li>
Chapter IV: Overview of perturbation evolution in minimal LCDM scenario
<table>
<tbody> <tr> <td align="left">
1. <a href="courses/EDPY/IV1.pdf" target="new">Which scales? Which times? Which species? (3 pages)</a>
<br>
2. <a href="courses/EDPY/IV2.pdf" target="new">A stochastic theory (6 pages)</a>
<br>
3. <a href="courses/EDPY/IV3.pdf" target="new">Super-Hubble evolution (18 pages)</a> with discussion of adiabatic vs. entropy/isocurvature modes
<br>
4. <a href="courses/EDPY/IV4.pdf" target="new">Sub-Hubble evolution during radiation domination (7 pages)</a>
<br>
5. <a href="courses/EDPY/IV5.pdf" target="new">Sub-Hubble evolution during matter domination (6 pages)</a>
<br>
6. <a href="courses/EDPY/IV6.pdf" target="new">Evolution during Lambda/DE domination (4 pages)</a> with graphical summary of sections 3,4,5,6.
<br>
7. <a href="courses/EDPY/IV7.pdf" target="new">Matter power spectrum (6 pages)</a>
</td> </tr> </tbody> </table>
<li>
Chapter V: CMB temperature anisotropies
</li>
<table>
<tbody> <tr> <td align="left">
1. <a href="courses/EDPY/V1.pdf" target="new">Boltzmann equation for photons (25 pages)</a>
<br>
2. <a href="courses/EDPY/V2.pdf" target="new">Coupled equations for baryons (1 page)</a>
<br>
3. <a href="courses/EDPY/V3.pdf" target="new">Fom perturbations to CMB anisotropies (14 pages)</a>
<br>
4.
<a href="courses/EDPY/V4.pdf" target="new">Generic contributions to the CMB spectrum (12 pages)</a>
<br>
5.
<a href="courses/EDPY/V5.pdf" target="new">Physical effects controlling the spectrum shape (2 pages)</a>
<br>
6.
<a href="courses/EDPY/V6.pdf" target="new">Effect of individual cosmological parameters on the CMB spectrum (3 pages)</a>
<br>
</td> </tr> </tbody> </table>
</table>
</li>
</ul>
</li></ul></td>
</tr>
</tbody></table>
</td>
</tr>
</tbody></table>
<hr>
Last update in 2009. Back to <a href="courses.html">courses</a> page.
</body></html>