Every year the Arnold Sommerfeld Center (ASC) for Theoretical Physics at the LMU in Munich organizes a school for PhD students. It covers topics which are of current interest in theoretical physics and range from more applied fields like condensed matter physics to rather mathematical fields like string theory. Announcements of upcoming schools can be found on the ASC schools webpage and a list of past schools can be found in the archive of the ASC schools.
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Physics 545 Solid State Physics at Purdue University. Textbook: Introduction to Solid State Physics by C. Kittel. Course webpage
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insideQuantum tells the human stories behind cutting-edge developments in quantum technology, with the aim of highlighting the diverse range of people behind the amazing discoveries powering the quantum revolution. Each episode features a different guest, chosen from a wide variety of backgrounds, jobs and career stages, including guests from both academia and industry. Over the course of a 30-40 minute chat we'll hear all about their story, and how they got to where they are now. What got t ...
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A concise and original introduction to a wide range of subjects—from Public Health to Buddhist Ethics, Soft Matter to Classics, and Art History to Globalization—by the expert authors of the Very Short Introductions series. For wherever your curiosity may take you.
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‘What We Don’t Know’ is a podcast series that explores the boundaries of human knowledge, investigating the unanswered questions and theories that unravel them at the frontiers of science. During this podcast I hope to get you interested in new areas of science, maths and technology, teaching you about existing concepts and igniting a curiosity for the things we have yet to know.
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Quantum Monte Carlo methods for fermion Hamiltonians with sign problem, and applications in the Hubbard model, part 1
1:26:17
1:26:17
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1:26:172024 Arnold Sommerfeld SchoolBy Shiwei Zhang (Flatiron)
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Quantum Monte Carlo methods for fermion Hamiltonians with sign problem, and applications in the Hubbard model, part 2
1:35:29
1:35:29
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1:35:292024 Arnold Sommerfeld SchoolBy Shiwei Zhang (Flatiron)
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Engineering flat-bands in moiré materials, part 2
1:15:51
1:15:51
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1:15:512024 Arnold Sommerfeld SchoolBy Dmitri Efetov (LMU Munich)
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Quantum Monte Carlo methods, Lecture 2
1:24:29
1:24:29
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1:24:292017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Lode Pollet
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The fuzzball paradigm: 3. The causality constraint
1:33:34
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1:33:342018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Samir Mathur
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The fuzzball paradigm: 1. The small corrections theorem
1:34:18
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1:34:182018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Samir Mathur
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Introduction to black hole informatics, Lecture 3
1:36:44
1:36:44
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1:36:442018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Larus Thorlacius
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Holography in General Spacetimes: Covariant Entropy Bound and Quantum Focussing
1:28:40
1:28:40
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1:28:402018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Raphael Bousso
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Black hole information and spacetime behind the horizon, Lecture 2
1:34:23
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1:34:232018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Kyriakos Papadodimas
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Geometry under microscope, Lecture 1
1:44:22
1:44:22
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1:44:222018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Gia Dvali
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Black hole information and spacetime behind the horizon, Lecture 1
1:36:18
1:36:18
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1:36:182018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Kyriakos Papadodimas
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Holography in General Spacetimes: The Bekenstein Bound
1:31:50
1:31:50
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1:31:502018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Raphael Bousso
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1
Introduction to black hole informatics, Lecture 2
1:35:40
1:35:40
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1:35:402018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Larus Thorlacius
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Holography in General Spacetimes: The Bekenstein bound, questions after the lecture
3:16
3:16
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3:162018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Raphael Bousso
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The fuzzball paradigm: 2. The fuzzball construction
1:29:33
1:29:33
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1:29:332018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Samir Mathur
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Projected entangled pair states (PEPS) (introduction)
1:42:39
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1:42:392017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Philippe Corboz
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Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 3
1:08:56
1:08:56
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1:08:562017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Olivier Parcollet
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Quantum Monte Carlo methods, Lecture 1
1:31:52
1:31:52
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1:31:522017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Lode Pollet
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Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 2
1:31:14
1:31:14
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1:31:142017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Olivier Parcollet
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2017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Steve White
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Matrix product states (MPS), Density matrix renormalization group (DMRG), Lecture 2
1:48:43
1:48:43
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1:48:432017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Ulrich Schollwöck
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Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 1
1:26:54
1:26:54
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1:26:542017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Olivier Parcollet
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Matrix product states (MPS), Density matrix renormalization group (DMRG), Hands on Session 2
1:07:21
1:07:21
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1:07:212017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy C. Hubig
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Matrix product states (MPS), Density matrix renormalization group (DMRG), Hands on Session 1
1:30:31
1:30:31
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1:30:312017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy C. Hubig
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Numerical renormalization group (NRG)
1:44:59
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1:44:592017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Andreas Weichselbaum
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Matrix product states (MPS), Density matrix renormalization group (DMRG), Lecture 1
1:45:04
1:45:04
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1:45:042017 Arnold Sommerfeld School: Numerical Methods for Correlated Many-Body SystemsBy Ulrich Schollwöck
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1D Active Matter, Guided Mechanochemical Pattern Formation, Lecture 3
59:54
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59:542019 Arnold Sommerfeld School: the Physics of LifeBy Stephan Grill
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Non-equilibrium dynamics & Holography, Lecture 3
1:33:40
1:33:40
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1:33:402016 Arnold Sommerfeld School: Quantum Many-Body Physics far from EquilibriumBy Mukund Rangamani
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Spatial population genetics, Lecture 3
1:30:55
1:30:55
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1:30:552019 Arnold Sommerfeld School: the Physics of LifeBy David Nelson
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Statistical mechanics approaches for studying microbial growth, Lecture 3
1:31:35
1:31:35
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1:31:352019 Arnold Sommerfeld School: the Physics of LifeBy Ariel Amir
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Information theory and optimality in biological networks, Lecture 3
1:46:12
1:46:12
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1:46:122019 Arnold Sommerfeld School: the Physics of LifeBy Gasper Tkacik
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2019 Arnold Sommerfeld School: the Physics of LifeBy Karen Alim
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Motility-induced phase separation and pattern formation, Lecture 3
1:38:10
1:38:10
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1:38:102019 Arnold Sommerfeld School: the Physics of LifeBy Julien Tailleur
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Spatial population genetics, Lecture 2
1:32:37
1:32:37
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1:32:372019 Arnold Sommerfeld School: the Physics of LifeBy David Nelson
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Information theory and optimality in biological networks, Lecture 2
1:31:48
1:31:48
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1:31:482019 Arnold Sommerfeld School: the Physics of LifeBy Gasper Tkacik
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Motility-induced phase separation and pattern formation, Lecture 2
1:36:35
1:36:35
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1:36:352019 Arnold Sommerfeld School: the Physics of LifeBy Julien Tailleur
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Statistical mechanics approaches for studying microbial growth, Lecture 2
1:31:17
1:31:17
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1:31:172019 Arnold Sommerfeld School: the Physics of LifeBy Ariel Amir
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Information theory and optimality in biological networks, Lecture 1
1:34:10
1:34:10
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1:34:102019 Arnold Sommerfeld School: the Physics of LifeBy Gasper Tkacik
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Cell migration on microstructured surfaces: From single cell to collective behavior
51:54
51:54
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51:542019 Arnold Sommerfeld School: the Physics of LifeBy Joachim Rädler
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1
Geometry under microscope, Lecture 3
1:50:37
1:50:37
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1:50:372018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Gia Dvali
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2019 Arnold Sommerfeld School: the Physics of LifeBy Stephan Grill
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1
Motility-induced phase separation and pattern formation, Lecture 1
1:30:46
1:30:46
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1:30:462019 Arnold Sommerfeld School: the Physics of LifeBy Julien Tailleur
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Protein self-organization in cell division
1:05:05
1:05:05
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1:05:052019 Arnold Sommerfeld School: the Physics of LifeBy Petra Schwille
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2019 Arnold Sommerfeld School: the Physics of LifeBy Stephan Grill
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1
Spatial population genetics, Lecture 1
1:33:50
1:33:50
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1:33:502019 Arnold Sommerfeld School: the Physics of LifeBy David Nelson
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Statistical mechanics approaches for studying microbial growth, Lecture 1
1:34:32
1:34:32
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1:34:322019 Arnold Sommerfeld School: the Physics of LifeBy Ariel Amir
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Black hole information and spacetime behind the horizon, Lecture 3
1:34:04
1:34:04
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1:34:042018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Kyriakos Papadodimas
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1
Holography in General Spacetimes: Quantum Null Energy Condition and Perspectives on Firewalls
1:41:05
1:41:05
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1:41:052018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Raphael Bousso
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1
Geometry under microscope, Lecture 2
1:42:16
1:42:16
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1:42:162018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Gia Dvali
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Quantum Completeness versus Classical Incompleteness of Black-Holes
2:05:04
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2:05:042018 Arnold Sommerfeld School: Black Holes and Quantum InformationBy Stefan Hofmann
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