Популярное

Музыка Кино и Анимация Автомобили Животные Спорт Путешествия Игры Юмор

Интересные видео

2025 Сериалы Трейлеры Новости Как сделать Видеоуроки Diy своими руками

Топ запросов

смотреть а4 schoolboy runaway турецкий сериал смотреть мультфильмы эдисон
dTub
Скачать

A Georges - Sum up on DMFT for the school

Автор: International Centre for Theoretical Sciences

Загружено: 2014-02-14

Просмотров: 8884

Описание:

PROGRAM: STRONGLY CORRELATED SYSTEMS: FROM MODELS TO MATERIALS

DATES: Monday 06 Jan, 2014 - Friday 17 Jan, 2014

VENUE: Department of Physics, IISc Campus, Bangalore

PROGRAM LINK : http://www.icts.res.in/program/MTM2014

The realistic description of materials with strong electron-electron interactions is one of the challenges of modern condensed matter physics. Such a realistic description on one hand requires non-perturbative many body approaches, and on the other hand requires model Hamiltonian with material specific details offered by density functional theory (DFT). Mastering these novel techniques requires a wide background, ranging from DFT to model building and non-perturbative many body approaches such as Quantum Monte Carlo. During the last few years a major breakthrough came with the development of the DFT+Dynamical Mean Field Theory (DFT+DMFT) method. In this approach, conventional ab-initio schemes based on DFT are combined with a modern many-body approach, the dynamical mean-field theory (DMFT). In the DMFT method the full many body problem of solid state physics is mapped onto a quantum impurity model related by a self-consistency condition and the resulting impurity model is solved using non-perturbative many body techniques.

The present program has this circle of ideas as its focus. It is built around three Chandrasekhar lectures to be delivered by Prof A. Georges. In addition to these lectures there will be a school, divided into two parts, and a discussion meeting, scheduled between the two parts of the school, in which recent theoretical and experimental results on strongly correlated materials will be discussed by leading experts from India and abroad.

The school will be devoted to the following topics.

School Part I : Jan 6 -- Jan 9, 2014

a) Basic Density Functional Theory (DFT) and basis sets

b) Wannier functions

c) An introduction to many-body methods and Quantum Monte Carlo

d) Constrained LDA/RPA and Estimation of U and J

School Part II : Jan 14 -- Jan 17, 2014

a) Dynamical Mean Field Theory (DMFT)

b) Impurity Solvers

c) GW+DMFT

d) DFT+DMFT

The program is designed to educate advanced graduate students and young post-doctoral fellows in this emerging field of strongly correlated systems and to train them to carry out numerical calculations.

A Georges - Sum up on DMFT for the school

Поделиться в:

Доступные форматы для скачивания:

Скачать видео mp4

  • Информация по загрузке:

Скачать аудио mp3

Похожие видео

A Georges - Sum up on DMFT for the school

A Georges - Sum up on DMFT for the school

Vijay Shenoy - Review of many body field theory   I

Vijay Shenoy - Review of many body field theory I

M  Harbola - An Introduction to Density Functional Theory

M Harbola - An Introduction to Density Functional Theory

M  Harbola - An Introduction to Density Functional Theory

M Harbola - An Introduction to Density Functional Theory

RCQM/FCMP: Rafael Fernandes: Topological properties of the Zeeman splitting in altermagnets

RCQM/FCMP: Rafael Fernandes: Topological properties of the Zeeman splitting in altermagnets

Summer school 2018 / Alexander Lichtenstein / Part 2. DMFT and beyond

Summer school 2018 / Alexander Lichtenstein / Part 2. DMFT and beyond

Vijay Shenoy - Review of many body field theory   II

Vijay Shenoy - Review of many body field theory II

Prof. Leon Balents:

Prof. Leon Balents: "Spin Liquids" (Lecture 1 of 2)

Dynamical Mean Field Theory (DMFT) for Beginners

Dynamical Mean Field Theory (DMFT) for Beginners

Garnet Chan

Garnet Chan "Matrix product states, DMRG, and tensor networks" (Part 1 of 2)

лекция38 Модель Хаббарда

лекция38 Модель Хаббарда

P  Blaha - Basic concepts of bandstructure methods and the APW based methods

P Blaha - Basic concepts of bandstructure methods and the APW based methods

Introduction to Correlated Materials. Lecture 4: The Hubbard Hamiltonian

Introduction to Correlated Materials. Lecture 4: The Hubbard Hamiltonian

Why are Many-Body Problems in Physics so Difficult?

Why are Many-Body Problems in Physics so Difficult?

DFT+U and beyond, by Prof. H. J. Kulik (MIT)

DFT+U and beyond, by Prof. H. J. Kulik (MIT)

The SYK Model by David Gross

The SYK Model by David Gross

6- Mean-field theory - Course on Quantum Many-Body Physics

6- Mean-field theory - Course on Quantum Many-Body Physics

Toward QMC: Hubbard-Stratonovich transformation

Toward QMC: Hubbard-Stratonovich transformation

The Physics of Superconducting Devices - Anthony Leggett - Lecture #1 - 2014

The Physics of Superconducting Devices - Anthony Leggett - Lecture #1 - 2014

16.01 Dynamical Mean Field Theory

16.01 Dynamical Mean Field Theory

© 2025 dtub. Все права защищены.



  • Контакты
  • О нас
  • Политика конфиденциальности



Контакты для правообладателей: infodtube@gmail.com