Yambo Code
Introduction to Many-Body Perturbation Theory
53:10
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Non-linear spectroscopy
46:15
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Electronic screening and linear response theory
40:26
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W-averaged GW in metals
35:12
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GW in practice: algorithms and approximations
25:31
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First principles and data-driven correlated materials
57:18
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GW without empty states and investigation of neutral excitations
50:16
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Optical absorption and excitons via the Bethe-Salpeter equation
40:52
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Frontiers in High-Performance Computing
37:15
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Introduction to Yambopy
34:27
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Real-time simulations
33:20
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Quasiparticles and the GW approximation
45:47
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A tour on Density Functional Theory
38:38
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Non-linear spectroscopy in Yambo
44:56
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Theory and simulation of High Harmonics Generation
48:58
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Coherent electron-phonon dynamics within a time-linear GKBA scheme
47:15
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Real time approach to the Bethe-Salpeter equation
35:01
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Nonlinear optics within Many-Body Perturbation Theory
49:11
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The Bethe-Salpeter equation: derivations and main physical concepts
54:57
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Time resolved spectroscopy: an experimental overview
52:41
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Modelling excitons: from 2D materials to Pump and Probe experiments
50:43
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TD-HSEX and real-time dynamics
41:20
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Frequency dependence in GW: origin, modelling and practical implementations
31:52
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The GW method: approximations and algorithms
46:27
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The Quasi Particle concept and the GW method
42:05
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An overview on non-equilibrium Green Functions
46:37
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ARPES spectroscopy, an experimental overview
46:54
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Beyond the independent particle scheme: The linear response theory
53:07
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The Many-Body Problem: Key concepts of theMany-Body Perturbation Theory
52:44
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Description and goals of the school
13:05
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Session on nonlinear optics - 16/04/2021 (Virtual School on Yambo ...)
12:08
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Yambo parallelism and HPC
29:41
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Electron-phonon coupling in Yambo
28:50
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BSE simulation tutorial: compute the excitonic properties of hBN
33:58
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Excitons in practice
17:12
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The Bethe-Salpeter Equation
16:57
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The GW method: Common approximations & practical implementations
17:50
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ARPES, quasiparticles and lifetimes: a theory overview
24:40
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Introduction to Many Body Perturbation Theory
15:25
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Linear response theory
17:31
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Yambo In Practice
22:43
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From equation to Simulation the Hard Life of a Material Scientist
22:28
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Computational Material Science: The Yambo perspective
22:33
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Optical Properties & Excitons
22:42
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The Yambo Philosophy
8:35
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Real time Many Body simulation propagating the density matrix
54:16
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Description and goals of the school From theoretical concepts to real computation of
54:18
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Introduction to Many body perturbation theory
21:47
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Introduction to Material Science
56:25
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The Quasi Particle concept and the GW method
54:58
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Yambo and abinit. Benasque 2010
8:20