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Centre for Quantum Information and Foundations

 

Career

Leigh Trapnell Professor of Quantum Physics, DAMTP, University of Cambridge (2022- )

Professor of Theoretical Physics, Ghent University (2012 - )

Professor of Physics, University of Vienna (2006 - 2019)

Research scholar, Institute for Quantum Information, Caltech (2004-2006)

Research fellow, Max Planck Institute for Quantum Optics (2002 - 2004)

              

Research

Research in my group is focused on understanding the role of entanglement in quantum computation and in interacting quantum many-body systems. We are developing the theory of quantum tensor networks, devise novel computational methods for optimizing them, and apply those to problems in condensed matter physics, quantum field theory, atomic physics, statistical physics and quantum computing.

See https://quantumghent.github.io/research/ for more info. 

 

Selected Publications

You can find most of my publications on the arXiv or on Google Scholar.

Publications

Extracting the Speed of Light from Matrix Product States.
AA Eberharter, L Vanderstraeten, F Verstraete, AM Läuchli
– Physical review letters
(2023)
131,
226502
Low-depth unitary quantum circuits for dualities in one-dimensional quantum lattice models
L Lootens, C Delcamp, D Williamson, F Verstraete
(2023)
Invertible Bimodule Categories and Generalized Schur Orthogonality
JC Bridgeman, L Lootens, F Verstraete
– Communications in Mathematical Physics
(2023)
402,
2691
Dualities in One-Dimensional Quantum Lattice Models: Symmetric Hamiltonians and Matrix Product Operator Intertwiners
L Lootens, C Delcamp, G Ortiz, F Verstraete
– Prx Quantum
(2023)
4,
020357
Dualities in one-dimensional quantum lattice models: symmetric Hamiltonians and matrix product operator intertwiners
L Lootens, C Delcamp, G Ortiz, F Verstraete
(2023)
Simulating thermal density operators with cluster expansions and tensor networks
B Vanhecke, D Devoogdt, F Verstraete, L Vanderstraeten
– Scipost Physics
(2023)
14,
085
Density matrix renormalization group, 30 years on
F Verstraete, T Nishino, U Schollwöck, MC Bañuls, GK Chan, ME Stoudenmire
– Nature Reviews Physics
(2023)
5,
273
One-dimensional symmetric phases protected by frieze symmetries
BV-D Cuiper, JC Bridgeman, N Dewolf, J Haegeman, F Verstraete
– Physical Review B
(2023)
107,
115123
Contrasting pseudo-criticality in the classical two-dimensional Heisenberg and $\mathrm{RP}^2$ models: zero-temperature phase transition versus finite-temperature crossover
L Burgelman, L Devos, B Vanhecke, F Verstraete, L Vanderstraeten
(2023)
Contrasting pseudocriticality in the classical two-dimensional Heisenberg and RP^{2} models: Zero-temperature phase transition versus finite-temperature crossover.
L Burgelman, L Devos, B Vanhecke, F Verstraete, L Vanderstraeten
– Phys Rev E
(2023)
107,
014117
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Research Group

Centre for Quantum Information and Foundations

Room

B0.15