Pedagogical introduction to equilibrium Green's functions: condensed-matter examples with numerical implementations

Type: Article

Publication Date: 2016-09-21

Citations: 26

DOI: https://doi.org/10.1590/1806-9126-rbef-2016-0087

View Chat PDF

Abstract

The Green's function method has applications in several fields in Physics, from classical differential equations to quantum many-body problems. In the quantum context, Green's functions are correlation functions, from which it is possible to extract information from the system under study, such as the density of states, relaxation times and response functions. Despite its power and versatility, it is known as a laborious and sometimes cumbersome method. Here we introduce the equilibrium Green's functions and the equation-of-motion technique, exemplifying the method in discrete lattices of non-interacting electrons. We start with simple models, such as the two-site molecule, the infinite and semi-infinite one-dimensional chains, and the two-dimensional ladder. Numerical implementations are developed via the recursive Green's function, implemented in Julia, an open-source, efficient and easy-to-learn scientific language. We also present a new variation of the surface recursive Green's function method, which can be of interest when simulating simultaneously the properties of surface and bulk.

Locations

  • Revista Brasileira de Ensino de FĂ­sica - View - PDF
  • arXiv (Cornell University) - View - PDF
  • Americanae (AECID Library) - View - PDF
  • DataCite API - View

Similar Works

Action Title Year Authors
+ Introduction to the equilibrium Green's functions: condensed matter examples with numerical implementations 2016 Mariana M. Odashima
Beatriz G. Prado
E. Vernek
+ An introduction to many-body Green's functions in and out of equilibrium 2019 J. K. Freericks
+ PDF Chat MatsubaraFunctions.jl: An equilibrium Green's function library in the Julia programming language 2024 Dominik Kiese
Anxiang Ge
Nepomuk Ritz
Jan von Delft
Nils Wentzell
+ MatsubaraFunctions.jl: An equilibrium Green's function library in the Julia programming language 2023 Dominik Kiese
Anxiang Ge
Nepomuk Ritz
Jan von Delft
Nils Wentzell
+ Efficient non-equilibrium Green's function simulations of correlated electron-boson systems 2020 Daniel Karlsson
Robert van Leeuwen
Y. Pavlyukh
Enrico Perfetto
Gianluca Stefanucci
+ PDF Chat Real-time non-adiabatic dynamics in the one-dimensional Holstein model: Trajectory-based vs exact methods 2022 M. ten Brink
S. GrÀber
Miroslav Hopjan
D. J. Jansen
Jan Stolpp
F. Heidrich-Meisner
Peter E. Blöchl
+ WavePacket: A Matlab package for numerical quantum dynamics. III: Quantum-classical simulations and surface hopping trajectories 2019 Burkhard Schmidt
Rupert Klein
Leonardo Cancissu Araujo
+ WavePacket: A Matlab package for numerical quantum dynamics. III: Quantum-classical simulations and surface hopping trajectories 2019 Burkhard Schmidt
Rupert Klein
Leonardo Cancissu Araujo
+ PDF Chat The non-equilibrium Green function approach to inhomogeneous quantum many-body systems using the generalized Kadanoff–Baym ansatz 2012 S. Hermanns
Karsten Balzer
M. Bönitz
+ PDF Chat User's guide to Monte Carlo methods for evaluating path integrals 2018 Marise J. E. Westbroek
Peter R. King
Dimitri D. Vvedensky
Stephan DĂŒrr
+ HierarchicalEOM.jl: An efficient Julia framework for hierarchical equations of motion in open quantum systems 2023 Yi-Te Huang
P. K. Kuo
Neill Lambert
Mauro Cirio
Simon Cross
S.-R. Eric Yang
Franco Nori
Yueh-Nan Chen
+ PDF Chat A numerical renormalization group approach to non-equilibrium Green functions for quantum impurity models 2008 Frithjof B. Anders
+ PDF Chat Report on 1710.03733v2 2019 Pietro Silvi
Ferdinand Tschirsich
Mette Gerster
Johannes JĂŒnemann
Daniel Jaschke
Matteo Rizzi
Simone Montangero
+ PDF Chat Classical dynamical density functional theory: from fundamentals to applications 2020 Michael te Vrugt
Hartmut Löwen
Raphael Wittkowski
+ PDF Chat The Tensor Networks Anthology: Simulation techniques for many-body quantum lattice systems 2019 Pietro Silvi
Ferdinand Tschirsich
Matthias Gerster
Johannes JĂŒnemann
Daniel Jaschke
Matteo Rizzi
Simone Montangero
+ PDF Chat A brief introduction to the diffusion Monte Carlo method and the fixed-node approximation 2024 Alfonso Annarelli
Dario AlfĂš
Andrea Zen
+ PDF Chat Time-linear scaling nonequilibrium Green's function methods for real-time simulations of interacting electrons and bosons. I. Formalism 2022 Y. Pavlyukh
Enrico Perfetto
Daniel Karlsson
Robert van Leeuwen
Gianluca Stefanucci
+ Cheers: a linear-scaling KBE+GKBA code 2023 Y. Pavlyukh
Riku Tuovinen
Enrico Perfetto
Gianluca Stefanucci
+ Energy redistribution and spatio-temporal evolution of correlations after a sudden quench of the Bose-Hubbard model 2020 Yosuke Takasu
Tomoya Yagami
Hiroto Asaka
Yoshiaki Fukushima
Kazuma Nagao
Shimpei Goto
Ippei Danshita
Yoshiro Takahashi
+ PDF Chat A brief introduction to the diffusion Monte Carlo method and the fixed-node approximation 2024 Alfonso Annarelli
Dario AlfĂš
Andrea Zen

Cited by (15)

Action Title Year Authors
+ PDF Chat Mottness collapse without metallization in the domain wall of the triangular-lattice Mott insulator<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:mn>1</mml:mn><mml:mi>T</mml:mi><mml:mo>−</mml:mo><mml:msub><mml:mrow><mml:mi>TaS</mml:mi></mml:mrow><mml:mrow><mml:mn>2</mml:mn></mml:mrow></mml:msub></mml:mrow></mml:math> 2019 Jan Skolimowski
Yaroslav Gerasimenko
Rok Ćœitko
+ PDF Chat RKKY interaction in one-dimensional flat-band lattices 2023 Katharina Laubscher
Clara S. Weber
Maximilian HĂŒnenberger
Herbert Schoeller
Dante M. Kennes
Daniel Loss
Jelena Klinovaja
+ Engineering topological phases in triple HgTe/CdTe quantum wells 2021 G. J. Ferreira
D. R. Candido
F. G. G. HernĂĄndez
G. M. Gusev
E. B. Olshanetsky
N. N. Mikhailov
S. A. Dvoretsky
+ Accelerating Sparse Approximate Matrix Multiplication on GPUs 2021 Xiaoyan Liu
Yi Liu
Ming Dun
Bohong Yin
Hailong Yang
Zhongzhi Luan
Depei Qian
+ Enhanced topological superconductivity in spatially modulated planar Josephson junctions 2021 Purna P. Paudel
Trey Cole
Benjamin D. Woods
Tudor D. Stanescu
+ PDF Chat Decimation technique for open quantum systems: A case study with driven-dissipative bosonic chains 2022 Álvaro Gómez-León
TomĂĄs Ramos
Diego Porras
Alejandro GonzĂĄlez-Tudela
+ PDF Chat Exact Traveling and Nano-Solitons Wave Solitons of the Ionic Waves Propagating along Microtubules in Living Cells 2020 Abdel‐Haleem Abdel‐Aty
Mostafa M. A. Khater
Raghda A. M. Attia
Hichem Eleuch
+ PDF Chat Accessing the degree of Majorana nonlocality in a quantum dot-optical microcavity system 2022 L. S. Ricco
V. K. Kozin
A. C. Seridonio
I. A. Shelykh
+ Magnetic fluctuations and the spin–orbit interaction in Mott insulating CoO 2020 Paul M. Sarte
Stephen D. Wilson
J. Paul Attfield
C. Stock
+ Quasiparticle excitations in a one-dimensional interacting topological insulator: Application for dopant-based quantum simulation 2022 David Mikhail
B. Voisin
Dominique Didier St Medar
Gilles Buchs
Sven Rogge
Stephan Rachel
+ PDF Chat Accelerating approximate matrix multiplication for near-sparse matrices on GPUs 2022 Xiaoyan Liu
Yi Liu
Hailong Yang
Ming Dun
Bohong Yin
Zhongzhi Luan
Depei Qian
+ PDF Chat Localization, transport, and edge states in a two-strand ladder network in an aperiodically staggered magnetic field 2020 Sk. Sajid
Arunava Chakrabarti
+ Accessing the degree of Majorana nonlocality with photons 2021 L. S. Ricco
V. K. Kozin
A. C. Seridonio
I. A. Shelykh
+ PDF Chat Gapless edge-modes and topology in the Qi-Wu-Zhang model: a real-space analysis 2024 Arjo Dasgupta
Indra Dasgupta
+ PDF Chat Non-Hermitian Fermi-Dirac Distribution in Persistent Current Transport 2024 Pei-Xin Shen
Zhide Lu
José L. Lado
Mircea Trif