Theoretical Physics Schools (ASC) cover art

All Episodes

Theoretical Physics Schools (ASC) — 253 episodes

#
Title
1

Detecting, quantifying and interpreting entanglement: (2) the multipartite case

2

Detecting, quantifying and interpreting entanglement: (1) the bipartite case

3

Topological quantum computing with Majorana fermions

4

Scaling photonic systems for quantum information processing

5

Quantum networks: theoretical foundations, practical implementations

6

Experimental Quantum Simulation with Neutral Atoms

7

A quantum computer based on trapped ions: status and prospects

8

Quantum Computing with Atomic Qubit Arrays

9

Quantum error correction, part 2

10

Quantum algorithms, part 2

11

Applications of quantum computing for quantum chemistry

12

Quantum Error Correction with Superconducting Circuits

13

Quantum error correction, part 1

14

Quantum algorithms, part 1

15

Engineering flat-bands in moiré materials, part 2

16

Theory of SU(N) Systems, part 2

17

Beyond (typical) FHM with ultracold Yb atoms in optical lattices

18

1/4 is the new 1/2: Topology and Strong Interactions

19

Introduction to DMRG and Tensor networks, part 2

20

Quantum Monte Carlo methods for fermion Hamiltonians with sign problem, and applications in the Hubbard model, part 2

21

Theory of SU(N) Systems, part 1

22

Quantum many-body physics with cold atoms and molecules, part 2

23

Quantum Monte Carlo methods for fermion Hamiltonians with sign problem, and applications in the Hubbard model, part 1

24

Quantum many-body physics with cold atoms and molecules, part 1

25

Introduction to DMRG and Tensor networks, part 1

26

Solving the Mott Problem

27

Beyond DMFT: weak and strong coupling pseudogaps and fluctuation diagnostics

28

Quantum simulation with bosonic atoms in optical lattices under the microscope

29

Engineering flat-bands in moiré materials, part 1

30

Quantum gas microscopy of the Fermi-Hubbard model: probing strongly correlated states

31

The dynamical mean-field description of strong correlations

32

An introduction to the Swampland, part 1 (2nd half)

33

Finiteness, Complexity, and the Swampland, part 2

34

Emergent Strings, the Weak Gravity Conjecture and their imprint in geometry, part 2

35

An introduction to the species scale in quantum gravity and string theory

36

S-matrix implications for fundamental physics and cosmology

37

Emergent Strings, the Weak Gravity Conjecture and their imprint in geometry, part 1

38

Finiteness, Complexity, and the Swampland, part 1

39

Distance Conjecture and the Species Scale

40

Swampland Implications for Particle Physics, part 2

41

Swampland and Cosmological Observations

42

The string theory landscape, part 2

43

An introduction to the Swampland, part 2

44

An introduction to the Swampland, part 1 (1st half)

45

The string theory landscape, part 1

46

Swampland Implications for Particle Physics, part 1

47

NetKetl: hands-on tutorial on neural network quantum states

48

Tutorial on boosting event generation & unfolding with generative networks, part 2

49

Neural network quantum states: from ground states to dynamics, part 2

50

Tutorial on boosting event generation & unfolding with generative networks, part 1

51

Neural network quantum states: from ground states to dynamics, part 1

52

Beyond ground states: Assisting sampling of physical states with generative models, part 2

53

Reliable AI: Dream or Reality?

54

Beyond ground states: Assisting sampling of physical states with generative models, part 1

55

Artificial Intelligence for Precision Cosmology

56

Machine learning for string theory

57

Tutorial on quantum state reconstruction of Rydberg atom arrays

58

Mathematical Foundations of Deep Learning

59

Autoregressive models and quantum state reconstruction

60

Generative Models, Manifolds and Symmetries: Applications

61

Understanding your network - towards interpretability in machine learning applications in many-body physics

62

Generative models and many-body physics

63

Simulation-based inference for physics and beyond

64

Generative Models, Manifolds and Symmetries: Tools

65

Spatial population genetics, Lecture 3

66

Statistical mechanics approaches for studying microbial growth, Lecture 3

67

Information theory and optimality in biological networks, Lecture 3

68

Fluid flows shaping morphology

69

Motility-induced phase separation and pattern formation, Lecture 3

70

Spatial population genetics, Lecture 2

71

Information theory and optimality in biological networks, Lecture 2

72

Motility-induced phase separation and pattern formation, Lecture 2

73

Statistical mechanics approaches for studying microbial growth, Lecture 2

74

Information theory and optimality in biological networks, Lecture 1

75

Cell migration on microstructured surfaces: From single cell to collective behavior

76

1D Active Matter, Guided Mechanochemical Pattern Formation, Lecture 3

77

1D Active Matter, Lecture 2

78

Motility-induced phase separation and pattern formation, Lecture 1

79

Protein self-organization in cell division

80

1D Active Matter, Lecture 1

81

Spatial population genetics, Lecture 1

82

Statistical mechanics approaches for studying microbial growth, Lecture 1

83

Black hole information and spacetime behind the horizon, Lecture 3

84

Holography in General Spacetimes: Quantum Null Energy Condition and Perspectives on Firewalls

85

Geometry under microscope, Lecture 2

86

Quantum Completeness versus Classical Incompleteness of Black-Holes

87

The fuzzball paradigm: 2. The fuzzball construction

88

Geometry under microscope, Lecture 3

89

The fuzzball paradigm: 3. The causality constraint

90

The fuzzball paradigm: 1. The small corrections theorem

91

Introduction to black hole informatics, Lecture 3

92

Holography in General Spacetimes: Covariant Entropy Bound and Quantum Focussing

93

Black hole information and spacetime behind the horizon, Lecture 2

94

Geometry under microscope, Lecture 1

95

Introduction to black hole informatics, Lecture 1

96

Black hole information and spacetime behind the horizon, Lecture 1

97

Holography in General Spacetimes: The Bekenstein Bound

98

Introduction to black hole informatics, Lecture 2

99

Holography in General Spacetimes: The Bekenstein bound, questions after the lecture

100

PEPS (mathematical aspects)

101

Quantum Monte Carlo methods, Lecture 2

102

Projected entangled pair states (PEPS) (introduction)

103

Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 3

104

Quantum Monte Carlo methods, Lecture 1

105

Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 2

106

DMRG in two dimensions

107

Matrix product states (MPS), Density matrix renormalization group (DMRG), Lecture 2

108

Dynamical Mean Field Theory (DMFT) and impurity solvers, Lecture 1

109

Matrix product states (MPS), Density matrix renormalization group (DMRG), Hands on Session 2

110

Matrix product states (MPS), Density matrix renormalization group (DMRG), Hands on Session 1

111

Numerical renormalization group (NRG)

112

Matrix product states (MPS), Density matrix renormalization group (DMRG), Lecture 1

113

Numerical renormalization group (NRG), Hands on Session

114

Non-equilibrium dynamics & Holography, Lecture 3

115

Non-equilibrium dynamics & Holography, Lecture 4

116

Far-from-equilibrium quantum fields: From ultracold atoms to cosmology, Lecture 4

117

Non-equilibrium dynamics & Holography, Lecture 2

118

Far-from-equilibrium quantum fields: From ultracold atoms to cosmology, Lecture 3

119

Non-equilibrium dynamics & Holography, Lecture 1

120

Entanglement, thermalization, and many-body localization, Lecture 4

121

Entanglement entropy following a quantum quench, Lecture 4

122

Entanglement entropy following a quantum quench, Lecture 3

123

Entanglement, thermalization, and many-body localization, Lecture 3

124

Far-from-equilibrium quantum fields: From ultracold atoms to cosmology, Lecture 2

125

Entanglement entropy following a quantum quench, Lecture 2

126

Entanglement, thermalization, and many-body localization, Lecture 2

127

Far-from-equilibrium quantum fields: From ultracold atoms to cosmology, Lecture 1

128

Entanglement, thermalization, and many-body localization, Lecture 1

129

Entanglement entropy following a quantum quench, Lecture 1

130

Creating and Probing Topological Matter with Cold Atoms: From Shaken Lattices to Synthetic Dimensions (Lecture 3)

131

The Quantum Hall effects (Lecture 3 Part 2)

132

Quantum Symmetries and 10-Fold Ways (Lecture 3)

133

Engineering topological phases: wire Majoranas to Floquet topological insulators (Lecture 3)

134

Quantum Symmetries and 10-Fold Ways (Lecture 2)

135

Engineering topological phases: wire Majoranas to Floquet topological insulators (Lecture 2)

136

Topological insulators and Berry phases (Lecture 3)

137

Realizing and Probing topological Bloch band using Ultracold Atoms

138

Quantum Symmetries and 10-Fold Ways (Lecture 1)

139

The Quantum Hall effects (Lecture 3 Part 1)

140

Topological insulators and Berry phases (Lecture 2)

141

Engineering topological phases: wire Majoranas to Floquet topological insulators (Lecture 1)

142

Creating and Probing Topological Matter with Cold Atoms: From Shaken Lattices to Synthetic Dimensions (Lecture 2)

143

The Quantum Hall effects (Lecture 1)

144

Creating and Probing Topological Matter with Cold Atoms: From Shaken Lattices to Synthetic Dimensions (Lecture 1)

145

The Quantum Hall effects (Lecture 2)

146

Topological insulators and Berry phases (Lecture 1)

147

Aspects of RG flows, part 3

148

Aspects of RG flows, part 4

149

Entanglement, geometry and black holes, part 4

150

Aspects of RG flows, part 1

151

Aspects of RG flows, part 2

152

Entanglement, geometry and black holes, part 3

153

Supergravity and Exceptional Field Theory, part 4

154

Supergravity and Exceptional Field Theory, part 3

155

Entanglement, geometry and black holes, part 2

156

Entanglement, geometry and black holes, part 1

157

Supergravity and Exceptional Field Theory, part 2

158

Supergravity and Exceptional Field Theory, part 1

159

Corpuscular structure of black holes, part 2

160

Introduction to Higher Spin Gravity, part 4

161

Black hole paradoxes: The clash of quantum mechanics and gravity, part 4

162

Introduction to the (super)conformal bootstrap, part 4

163

Quantum integrable systems and gauge theories, part 4

164

Black hole paradoxes: The clash of quantum mechanics and gravity, part 3

165

Introduction to Higher Spin Gravity, part 3

166

Introduction to the (super)conformal bootstrap, part 3

167

Corpuscular structure of black holes, part 1

168

Quantum integrable systems and gauge theories, part 3

169

Black hole paradoxes: The clash of quantum mechanics and gravity, part 2

170

Introduction to Higher Spin Gravity, part 2

171

Introduction to the (super)conformal bootstrap, part 2

172

Quantum integrable systems and gauge theories, part 2

173

Future Colliders at the Energy Frontier

174

Introduction to Higher Spin Gravity, part 1

175

Black hole paradoxes: The clash of quantum mechanics and gravity, part 1

176

Quantum matter and gauge-gravity duality - Lecture 3

177

Transport: from Boltzmann equations to holography - Lecture 3

178

Entanglement Entropy and AdS/CFT - Lecture 3

179

Quantum matter and gauge-gravity duality - Lecture 2

180

Transport: from Boltzmann equations to holography - Lecture 2

181

From Critical Phenomena to Holographic Duality in Quantum Matter - Lecture 3

182

Holography with and without gravity - Lecture 3

183

Entanglement Entropy and AdS/CFT - Lecture 2

184

Transport: from Boltzmann equations to holography - Lecture 1

185

From Critical Phenomena to Holographic Duality in Quantum Matter - Lecture 2

186

Quantum matter and gauge-gravity duality - Lecture 1

187

Holography with and without gravity - Lecture 2

188

From Critical Phenomena to Holographic Duality in Quantum Matter - Lecture 1

189

Entanglement Entropy and AdS/CFT - Lecture 1

190

Holography with and without gravity - Lecture 1

191

Introduction to On-shell Diagrams - Part IV

192

Introduction to On-shell Diagrams - Part III

193

Introduction to On-shell Diagrams - Part II

194

Color-kinematics duality (loop-level)

195

Introduction to On-shell Diagrams - Part I

196

Cut construction & color-kinematics duality (tree-level)

197

The Basic Structure Of Scattering Amplitudes - Part IV

198

New tools for computing in gauge theories - Part IV

199

Unitarity cut verification

200

New tools for computing in gauge theories - Part III

201

The Basic Structure Of Scattering Amplitudes - Part III

202

Terminology, conventions & momentum-flow Graphs

203

New tools for computing in gauge theories - Part II

204

New tools for computing in gauge theories - Part I

205

The Basic Structure Of Scattering Amplitudes - Part II

206

The Basic Structure Of Scattering Amplitudes - Part I

207

Singularities in string theory, part 1b

208

Mirror symmetry and D-branes, part 3

209

Singularities in string theory, part 3

210

Mirror symmetry and D-branes, part 2

211

Mirror symmetry and D-branes, part 1

212

Singularities in string theory, part 2

213

Mirror symmetry, the closed string point of view, part 3

214

Mirror symmetry, the closed string point of view, part 2

215

Algebraic geometry for physicists, part 1

216

Mirror symmetry, the closed string point of view, part 1

217

Singularities in string theory, part 1a

218

Algebraic geometry and N=1 string compactifications, part 3

219

Algebraic geometry and N=1 string compactifications, part 2

220

Algebraic geometry for physicists, part 3

221

Algebraic geometry for physicists, part 2

222

Algebraic geometry and N=1 string compactifications, part 1

223

Topological String Theory, Part 3

224

Doubled field theory, T-duality, and Courant brackets, Part 3

225

Topological String Theory, Part 2

226

Topological String Theory, Tutorial

227

Applications of holography to strongly coupled media, Part 3

228

Doubled field theory, T-duality, and Courant brackets, Part 2

229

Topological String Theory, Part 1

230

Quantum Black Holes, Part 3

231

Doubled field theory, T-duality, and Courant brackets, Part 1

232

Applications of holography to strongly coupled media, Part 2

233

Quantum Black Holes, Part 2

234

Quantum Black Holes, Tutorial

235

Applications of holography to strongly coupled media, Part 1

236

Quantum Black Holes, Part 1

237

Open Questions and Future Perspectives of Particle Physics

238

Introduction to Gauge/Gravity Duality, Part 3

239

Introduction to black holes in String theory and in AdS/CFT, Part 4

240

Introduction to black holes in String theory and in AdS/CFT, Part 3

241

D-branes and Orientifolds, Part 2

242

D-branes and Orientifolds, Part 3

243

D-branes and Orientifolds, Part 1

244

Introduction to Gauge/Gravity Duality, Part 2

245

Introduction to String Theory, Part 6

246

Introduction to black holes in String theory and in AdS/CFT, Part 2

247

Introduction to String Theory, Part 5

248

Introduction to String Theory, Part 4

249

Introduction to String Theory, Part 3

250

Introduction to black holes in String theory and in AdS/CFT, Part 1

251

Introduction to String Theory, Part 2

252

Introduction to Gauge/Gravity Duality, Part 1

253

Introduction to String Theory, Part 1