In this MOOC, you will have the opportunity to practice several methods of detection and characterisation of exoplanets.
You will discover their statistical properties and the current state of knowledge we have in this very recent field of research. You will also understand the limitations and biases of the different detection techniques.
At the end of this MOOC, you will have a good general understanding of the methods of detection and characterisation of exoplanets and their atmosphere. You will also have a basic understanding of spectroscopy and light curve analysis.
All this knowledge will help you to participate in and understand citizen science projects.
The original version of the MOOC dates from 2014 and some of the content has been updated in 2020 to take into account the progress of research in the field.
If you want to talk about exoplanets, there is no miracle, you have to go through the fundamentals of astrophysics. This is why we propose that you first approach astrophysics from a more historical and fundamental point of view. How did the representation of the universe evolve? How was the modern vision of "celestial mechanics" constructed? You will have the pleasure of discovering the answers to some of these questions. However, in order to go further in this course, we will also see Kepler's three laws as well as some basic notions about protoplanetary disks, planets or star formation. In this first module, we propose to lay the foundations necessary to deal with the concept that interests us all: exoplanets.
Das ist alles enthalten
10 Videos2 Lektüren1 Aufgabe
Infos zu Modulinhalt anzeigen
10 Videos•Insgesamt 105 Minuten
MOOC Trailer•1 Minute
Introduction by Michel Mayor•2 Minuten
General introduction - Part 1•11 Minuten
General introduction - Part 2•12 Minuten
Kepler’s laws•11 Minuten
Kepler’s 3rd law•10 Minuten
[Planet &] Stellar Formation•17 Minuten
Protoplanetary disks - Part 1•13 Minuten
Protoplanetary disks - Part 2•12 Minuten
Planet formation•16 Minuten
2 Lektüren•Insgesamt 20 Minuten
📢 Important preliminary information: Evaluations and subtitles•10 Minuten
Slides of module 1•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Quiz 1•30 Minuten
Planet detection I
Modul 2•2 Stunden abzuschließen
Moduldetails
In this second module we will focus on the detection of exoplanets. Together we will discover three methods for detecting extrasolar planets. (1) Radial velocities, which allowed the first detections of hot Jupiters. (2) Astrometry, a method that the Gaia satellite has greatly contributed to boosting. (3) Direct imaging, the only way to really see planetary companions. Don't be scared off by the mathematical approach used to describe these methods. A general understanding is sufficient to follow the next few weeks of the course.
Das ist alles enthalten
7 Videos1 Lektüre1 Aufgabe
Infos zu Modulinhalt anzeigen
7 Videos•Insgesamt 74 Minuten
Introduction by Michel Mayor •3 Minuten
From Kepler Equations to planets detection - Part 1•12 Minuten
From Kepler Equations to planets detection - Part 2•10 Minuten
Radial velocities - Part 1•13 Minuten
Radial velocities - Part 2•10 Minuten
Astrometry•14 Minuten
Direct imaging technique•12 Minuten
1 Lektüre•Insgesamt 10 Minuten
Slides of module 2•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Quiz 2•30 Minuten
Planet detection II
Modul 3•3 Stunden abzuschließen
Moduldetails
For this third module, we remain in planet detection. However, this time we will explore the specific case of a planet being seen nearly edge-on and transiting its star. The observation of exoplanet eclipses (transits and occultations) provides us with a wealth of parameters and is currently the most powerful technique to study the structure and other intrinsic properties of planets. In this module, you will therefore have the opportunity to discover mainly how to apply the transit method, but also, at the end of the module, the main outcomes that have been obtained through the use of the transit method.
Das ist alles enthalten
12 Videos2 Lektüren1 Aufgabe
Infos zu Modulinhalt anzeigen
12 Videos•Insgesamt 120 Minuten
Introduction by Michel Mayor •2 Minuten
How does it look?•12 Minuten
Description of a transit - A qualitative perspective•6 Minuten
Description of a transit - Quantitative aspects•17 Minuten
Physical parameters of transiting system•17 Minuten
From transit candidats to transiting planets•14 Minuten
Two transit search experiments•11 Minuten
Outlook of results•9 Minuten
Light Curve inspection and analysis•6 Minuten
Citizen science for exoplanets detection•7 Minuten
Transiting exoplanets properties•10 Minuten
Space missions•10 Minuten
2 Lektüren•Insgesamt 20 Minuten
Where to do citizen science?•10 Minuten
Slides of module 3•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Quiz 3•30 Minuten
Statistical results I
Modul 4•2 Stunden abzuschließen
Moduldetails
Now let's dive into statistics! In this module, we will be interested in the statistical properties of planetary systems. We have chosen to use a chronological approach to do so. First of all, you will discover the first results of the radial velocity programs which unveiled the great diversity of planetary systems. We will then compare these results with those obtained more recently by the transit surveys and the most recent radial velocity surveys. The statistical results of these research programs have brought to light a multiplicity of discoveries around exoplanets. You will have the pleasure of discovering them throughout this module.
Das ist alles enthalten
8 Videos1 Lektüre1 Aufgabe
Infos zu Modulinhalt anzeigen
8 Videos•Insgesamt 77 Minuten
Introduction by Michel Mayor •3 Minuten
Early results on the occurrence of extra-solar planets - Part 1•7 Minuten
Early results on the occurrence of extra-solar planets - Part 2•11 Minuten
The variety of systems•9 Minuten
Distribution, mass, separation - From RV Technique•12 Minuten
Distribution, mass, separation - From Transit Technique - Part 1•13 Minuten
Mass-radius relation•10 Minuten
Observation vs Theory•12 Minuten
1 Lektüre•Insgesamt 10 Minuten
Slides of module 4•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Quiz 4•30 Minuten
Statistical results II
Modul 5•2 Stunden abzuschließen
Moduldetails
For this fifth module, let's continue our exploration of statistical methods! We will continue to discover the properties of the exoplanetary systems that have been detected so far. You will have the opportunity to understand the link between the properties of the planets and the mass of the central star. We will also see in more detail the dynamics of multiplanetary systems, how planet-planet interactions are translated and, in particular, what are the parameters that influence the stability of systems.
Das ist alles enthalten
8 Videos1 Lektüre1 Aufgabe
Infos zu Modulinhalt anzeigen
8 Videos•Insgesamt 85 Minuten
Introduction by Michel Mayor •3 Minuten
Effect of the central star mass•11 Minuten
Orbital eccentricity•10 Minuten
Dynamics of multi-planet systems - Newtonian modeling•14 Minuten
Dynamics of multi-planet systems - Analytical approach•9 Minuten
Dynamics of multi-planet systems - Bodily tides•14 Minuten
Let us leave now the statistical analyses to go and look at the properties of the surfaces and atmospheres of exoplanets. In the previous modules, we have seen that radial velocity measurements combined with transits observations allow us to have access to the average density of exoplanets. We could thus put some constraints on the internal structure of the objects. Although only a few very specific systems (young and massive planets with large separation) have been imaged so far, spectroscopic measurements and subtle strategies of observation of transiting and non-transiting systems allow us to know the characteristics of planetary surfaces and atmospheres. This is all we will see together for this penultimate module.
Das ist alles enthalten
12 Videos1 Lektüre1 Aufgabe
Infos zu Modulinhalt anzeigen
12 Videos•Insgesamt 128 Minuten
Introduction by Michel Mayor •2 Minuten
From bulk composition to atmospheric properties •7 Minuten
Basics of atmospheric physics: interpreting emergent spectra•13 Minuten
Basics of atmospheric physics: chemical composition•12 Minuten
Basics of atmospheric physics: pressure-temperature profile•12 Minuten
Observational strategies: how to separate star and planet spectra•15 Minuten
Transmission spectroscopy - Part I•12 Minuten
Transmission spectroscopy - Part II•11 Minuten
Thermal emission - Part I•14 Minuten
Thermal emission - Part II•8 Minuten
Reflected light•15 Minuten
Future prospects •7 Minuten
1 Lektüre•Insgesamt 10 Minuten
Slides of module 6•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Quiz 6•30 Minuten
Latest news from the exoplanetary atmospheres
Modul 7•2 Stunden abzuschließen
Moduldetails
For this last part of the course, let's continue and complete our exploration of the atmospheres of exoplanets. This module is in fact an update of the course. It integrates the new insights obtained on exoplanet atmospheres since 2014 (date of the first edition of this MOOC). Actually, the content of these last videos is very close to what you would get if you were attending a review on the subject at a real scientific conference. We hope you will enjoy this journey through the different layers of the atmosphere of exoplanets!
Das ist alles enthalten
8 Videos1 Lektüre1 Aufgabe
Infos zu Modulinhalt anzeigen
8 Videos•Insgesamt 82 Minuten
Introduction & signs of water•13 Minuten
Aerosols•12 Minuten
The power of high spectral resolution•9 Minuten
Stratospheres•8 Minuten
Thermospheres•9 Minuten
Exospheres•13 Minuten
Perspectives•13 Minuten
Thank you for following us ! •6 Minuten
1 Lektüre•Insgesamt 10 Minuten
Slides of module 7•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Quiz 7•30 Minuten
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4 stars
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3 stars
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Zeigt 3 von 38 an
D
DS
5·
Geprüft am 16. Juni 2024
I have learned how to detect and characterize exoplanets. I had some difficulty understanding some words because of the accents but it does not keep me from understanding the lecture and material.
C
CM
5·
Geprüft am 16. Nov. 2022
An extremely Interesting course with great lecturers, who are at the forefront of the subject
M
M
5·
Geprüft am 20. Juli 2024
I love class like this . I have learn a lot. about exoplanets
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