Mathematical Aspects of Quantum Integrable Models in and out of Equilibrium: Recent Episodes

Cambridge University

Quantum Integrability is a rich and highly cross-disciplinary subject, with fascinating mathematical structures and a wide spectrum of physical applications. It is the key tool for understanding critical properties of numerous quantum systems at and out of equilibrium, such as spin chains or the delta-function Bose gas (also known as the quantum non-linear Schrödinger equation). Long-standing problems such as the scaling limit of the Ising model in a magnetic field have been solved thanks to recent developments of integrable techniques.

These developments in theoretical physics have been paralleled by advances in several areas of pure and applied mathematics, enhancing interactions among researchers working on combinatorics, probability theory, infinite dimensional Lie algebras, knots and braids, soliton systems, random matrices, non-linear differential equations and computational science.

A new arena for quantum integrable systems has recently arisen as a result of the ability to realize for the first time, stable and controllable isolated quantum systems (by means of cold atom experimental set-ups). This has led to an immense growth of this research area and has given access to a largely unexplored territory of out-equilibrium quantum dynamics.

These exciting advances call for the development of new mathematical techniques to meet the challenge of describing out-of-equilibrium phenomena in strongly interacting lowdimensional quantum systems.

In gathering together a core group of outstanding scientists, we aim to make substantial progress on a series of key open problems. Topics will include

Quantum Quenches Boundary Conformal Field Theory Driven Systems Local and non-local conserved charges Boltzmann equation and transport phenomena Entanglement measures Linear and non-linear response Non-linear hydrodynamics Thermalization and Equilibration in Quantum Systems Generalized Gibbs Ensemble Dynamics of quantum integrable systems Open quantum systems Techniques in atomics condensate

Activities

In the first week of the programme there will be a conference, that will gather together leading physicists and mathematicians in the area of Quantum Integrability. In each of the following weeks there will be two introductory 60 minute lectures by world-leading experts. The topics of the lectures will be chosen to mesh with Focus Week Activities planned to involve the participants on key themes of the programme. During the Focus Weeks there will also be a certain number of round table discussions that will help in exploiting new scientific directions and shaping the future research on this emerging field.

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Rigol, M (Pennsylvania State University) Tuesday 2nd February 2016 - 11:30 to 12:30

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Oshikawa, M (University of Tokyo) Thursday 4th February 2016 - 11:30 to 12:30

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Abanov, A (Stony Brook University) Wednesday 3rd February 2016 - 11:30 to 12:30

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Sotiriadis, S (SISSA, Università degli Studi Roma Tre) Tuesday 2nd February 2016 - 16:00 to 17:00

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Schoutens, K (Universiteit van Amsterdam) Friday 29th January 2016 - 11:30 to 12:30

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Castro Alvaredo, O (City University, London) Thursday 28th January 2016 - 11:30 to 12:30

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Lukyanov, S (Rutgers, The State University of New Jersey) Wednesday 27th January 2016 - 11:30 to 12:30

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Ilievski, E (Universiteit van Amsterdam) Tuesday 26th January 2016 - 11:30 to 12:30

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Bhaseen, J (King's College London) Monday 25th January 2016 - 14:00 to 15:00

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Polkovnikov, P (Boston University) Thursday 21st January 2016 - 11:30 to 12:30

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Batchelor, M (Chongqing University, Australian National University) Friday 22nd January 2016 - 11:30 to 12:30

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LeClair, A (Cornell University) Wednesday 20th January 2016 - 11:30 to 12:30

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Eisert, J (Freie Universität Berlin) Friday 15th January 2016 - 15:00 to 16:00

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Takacs, G (Budapest University of Technology and Economics) Friday 15th January 2016 - 11:30 to 12:30

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Konik, R (Brookhaven National Laboratory) Thursday 14th January 2016 - 14:00 to 15:00

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Terras, V [Université Paris-Sud 11, CNRS (Centre national de la recherche scientifique)] Thursday 14th January 2016 - 15:00 to 16:00

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Calabrese, P (SISSA) Tuesday 12th January 2016 - 15:00 to 16:00

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Vasseur, R (University of California, Berkeley, Lawrence Berkeley National Laboratory) Monday 11th January 2016 - 15:00 to 16:00

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Kormos, M (Budapest University of Technology and Economics) Monday 11th January 2016 - 10:00 to 11:00

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Fagotti, M (École Normale Supérieure) Monday 11th January 2016 - 14:00 to 15:00

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Silva, A (SISSA, Abdus Salam International Centre for Theoretical Physics) Thursday 14th January 2016 - 10:00 to 11:00

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Sklyanin, E (University of York) Thursday 14th January 2016 - 16:30 to 17:30

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Schmiedmayer, J (Technische Universität Wien) Thursday 14th January 2016 - 11:30 to 12:30

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Lamacraft, A (University of Cambridge) Friday 15th January 2016 - 14:00 to 15:00

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Cardy, J (University of California, Berkeley, University of Oxford) Wednesday 13th January 2016 - 14:00 to 15:00

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Doyon, B (King's College London) Wednesday 13th January 2016 - 11:30 to 12:30

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Cirac, I (Max-Planck-Institut für Quantenoptik) Wednesday 13th January 2016 - 10:00 to 11:00

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Viti, J (Max-Planck-Institut für Physik komplexer Systeme, Dresden) Wednesday 13th January 2016 - 16:30 to 17:30

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Caux, JS (Universiteit van Amsterdam) Tuesday 12th January 2016 - 14:00 to 15:00

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Prosen, T (University of Ljubljana) Wednesday 13th January 2016 - 15:00 to 16:00

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Gritsev, V (Universiteit van Amsterdam) Tuesday 12th January 2016 - 11:30 to 12:30

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Moore, J (University of California, Berkeley) Monday 11th January 2016 - 11:30 to 12:30

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Alcaraz, F (Universidade de São Paulo) Monday 11th January 2016 - 16:30 to 17:30