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Program, courses and calendar Master ICFP 1st year (2023-2024)
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Program, courses and calendar Master ICFP 1st year (2022-2023)
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Program, courses and calendar Master ICFP 2nd year 2022-2023
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Program, courses and calendar 2022 - 2023
2022-2023 Timetable and calendar
Courses
Internships
Program, courses and calendar 2023 - 2024
2022-2023 Timetable and calendar
Courses
Internships
Program, courses and calendar 2021 - 2022
2021-2022 Timetable and calendar
Courses
Internships
Admissions
Recrutement sur concours
Recrutement sur dossier : Concours normalien étudiant
Contacts
Seminars
Seminars
2023-2024 FIP/ICFP seminar Program
Undergraduate program Intranet
Archives
Archives 2015-2016
Archives 2016-2017
Archives 2017-2018
Archives 2018-2019
Archives 2019-2020
Archives 2020-2021
Why choose this program?
Program, courses and calendar Master ICFP 1st year (2023-2024)
2023-2024 Calendar and timetable
Courses
Internships
Program, courses and calendar Master ICFP 1st year (2022-2023)
2022-2023 Calendar and timetable
Courses
Internships
Program, courses and calendar Master ICFP 2nd year 2023-2024
First Semester
Second Semester
"Physics Now" Seminars 2019/2020
"Physics Now" Seminars 2020/2021
"Physics Now" Seminars 2021/2022
"Physics Now" Seminars 2023/2024
"Physics Now" Seminars 2022/2023
Internships
2023 2024 calendar
Program, courses and calendar Master ICFP 2nd year 2022-2023
First Semester
Second Semester
"Physics Now" Seminars 2019/2020
"Physics Now" Seminars 2020/2021
"Physics Now" Seminars 2021/2022
"Physics Now" Seminars 2022/2023
Internships
2022 2023 calendar
Admission and Language Requirements
How to apply
Information for students
Information for International Students
Fees and Scholarships
Careers
Master Intranet
Archives
Erreur ( A supprimer)
Program, courses and calendar Master ICFP 1st year (2021-2022)
Program, courses and calendar Master ICFP 1st year (2021-2022)
Program, courses and calendar Master ICFP 2nd year 2021-2022
Program, courses and calendar Master ICFP 2nd year 2020-2021
Program, courses and calendar Master ICFP 2nd year 2019-2020
Archives 2015-2016
Archives 2016-2017
Archives 2017-2018
Archives 2018-2019
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Next student seminar :
Access to the program
Here you can find information about your internships:
Experimental Internship - Undergraduate program
Master ICFP first year Internship
News : ICFP Research seminars
November 14 - 18, 2022 :
All information about the program
Contact us - Student support and Graduate School office :
Tél : 01 44 32 35 60
enseignement@phys.ens.fr
Next student seminar :
Access to the program
Here you can find information about your internships:
Experimental Internship - Undergraduate program
Master ICFP first year Internship
News : ICFP Research seminars
November 14 - 18, 2022 :
All information about the program
Contact us - Student support and Graduate School office :
Tél : 01 44 32 35 60
enseignement@phys.ens.fr
Facutlty: Pascal Simon, Michele Casula
Tutor:
Nombre d’ECTS: 3
Langue d’enseignement : Anglais
Description:
This course aims at introducing modern methods of many-body theory to M2 students. After some general motivations, we will lay the foundation of many-body physics by presenting fundamental tools such as Green functions and diagrammatic expansions formalisms. We will apply these tools to some concrete examples in condensed matter physics and cold atoms in order to connect the theoretical framework to standard observables. Finally, the course will give an overview on the latest numerical developments in the field.
Outlook of the course:
0) General introduction and some reminder.
Strong local interaction; role of dimensionality of particle statistics
I) Green function formalism
Green function at T=0. Application to free fermions.
The resonant level model and Friedel oscillations.
Spectral representations.
Finite temperature Matsubara Green functions
II) Introduction to Feynman diagrams
Interaction representation and Wick theorem
Perturbative expansion of Green functions and Feynman diagrams
Application to electron-phonon interaction
Application to electron-electron interaction
III) Introduction to quantum impurity models
Anderson model and various limiting cases
Feynman diagrams in the Anderson model.
Application to transport in quantum dots.
IV) Phenomenology of the Fermi liquid.
Notion of quasi-particle excitation
Self-energy and spectral consequences
V) Dynamical Mean Field Theory
Bethe lattice
Lattice Embedding to a Quantum impurity model
Hubbard model from a dynamical mean field perspective
Mott transition
Critical exponents
VI) Many-body theories for ab initio calculations
Hedin’s equations
GW approximation
Bosonic degrees of freedom: plasmons and phonons
Examination: oral exam
Next student seminar :
Access to the program
Here you can find information about your internships:
Experimental Internship - Undergraduate program
Master ICFP first year Internship
News : ICFP Research seminars
November 14 - 18, 2022 :
All information about the program
Contact us - Student support and Graduate School office :
Tél : 01 44 32 35 60
enseignement@phys.ens.fr
RECRUITMENT
DIRECT ACCESS