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Artificial honeycomb lattices for electrons, atoms and photons
M Polini, F Guinea, M Lewenstein… - Nature …, 2013 - nature.com
Artificial honeycomb lattices offer a tunable platform for studying massless Dirac
quasiparticles and their topological and correlated phases. Here we review recent progress …
quasiparticles and their topological and correlated phases. Here we review recent progress …
Two-terminal transport measurements with cold atoms
S Krinner, T Esslinger, JP Brantut - Journal of Physics …, 2017 - iopscience.iop.org
In recent years, the ability of cold atom experiments to explore condensed-matter-related
questions has dramatically progressed. Transport experiments, in particular, have expanded …
questions has dramatically progressed. Transport experiments, in particular, have expanded …
Probing entanglement in a many-body–localized system
A Lukin, M Rispoli, R Schittko, ME Tai, AM Kaufman… - Science, 2019 - science.org
An interacting quantum system that is subject to disorder may cease to thermalize owing to
localization of its constituents, thereby marking the breakdown of thermodynamics. The key …
localization of its constituents, thereby marking the breakdown of thermodynamics. The key …
Variational quantum algorithms for nonlinear problems
We show that nonlinear problems including nonlinear partial differential equations can be
efficiently solved by variational quantum computing. We achieve this by utilizing multiple …
efficiently solved by variational quantum computing. We achieve this by utilizing multiple …
Observation of interaction-induced mobility edge in an atomic Aubry-André wire
Y Wang, JH Zhang, Y Li, J Wu, W Liu, F Mei, Y Hu… - Physical Review Letters, 2022 - APS
A mobility edge, a critical energy separating localized and extended excitations, is a key
concept for understanding quantum localization. The Aubry-André (AA) model, a paradigm …
concept for understanding quantum localization. The Aubry-André (AA) model, a paradigm …
Exploring the many-body localization transition in two dimensions
J Choi, S Hild, J Zeiher, P Schauß, A Rubio-Abadal… - Science, 2016 - science.org
A fundamental assumption in statistical physics is that generic closed quantum many-body
systems thermalize under their own dynamics. Recently, the emergence of many-body …
systems thermalize under their own dynamics. Recently, the emergence of many-body …
Observation of many-body localization of interacting fermions in a quasirandom optical lattice
M Schreiber, SS Hodgman, P Bordia, HP Lüschen… - Science, 2015 - science.org
Many-body localization (MBL), the disorder-induced localization of interacting particles,
signals a breakdown of conventional thermodynamics because MBL systems do not …
signals a breakdown of conventional thermodynamics because MBL systems do not …
[ספר][B] Ultracold Atoms in Optical Lattices: Simulating quantum many-body systems
M Lewenstein, A Sanpera, V Ahufinger - 2012 - books.google.com
Quantum computers, though not yet available on the market, will revolutionize the future of
information processing. Quantum computers for special purposes like quantum simulators …
information processing. Quantum computers for special purposes like quantum simulators …
Coupling identical one-dimensional many-body localized systems
P Bordia, HP Lüschen, SS Hodgman, M Schreiber… - Physical review …, 2016 - APS
We experimentally study the effects of coupling one-dimensional many-body localized
systems with identical disorder. Using a gas of ultracold fermions in an optical lattice, we …
systems with identical disorder. Using a gas of ultracold fermions in an optical lattice, we …
Periodically driven ergodic and many-body localized quantum systems
P Ponte, A Chandran, Z Papić, DA Abanin - Annals of Physics, 2015 - Elsevier
We study dynamics of isolated quantum many-body systems whose Hamiltonian is switched
between two different operators periodically in time. The eigenvalue problem of the …
between two different operators periodically in time. The eigenvalue problem of the …