Roadmap on Atomtronics: State of the art and perspective
Atomtronics deals with matter-wave circuits of ultracold atoms manipulated through
magnetic or laser-generated guides with different shapes and intensities. In this way, new …
magnetic or laser-generated guides with different shapes and intensities. In this way, new …
Colloquium: Atomtronic circuits: From many-body physics to quantum technologies
Atomtronics is an emerging field that aims to manipulate ultracold atom moving in matter-
wave circuits for fundamental studies in both quantum science and technological …
wave circuits for fundamental studies in both quantum science and technological …
Direct Probing of the Mott Crossover in the Fermi-Hubbard Model
We report on a detailed experimental investigation of the equation of state (EoS) of the three-
dimensional Fermi-Hubbard model (FHM) in its generalized SU (N)-symmetric form, using a …
dimensional Fermi-Hubbard model (FHM) in its generalized SU (N)-symmetric form, using a …
Non-perturbative methodologies for low-dimensional strongly-correlated systems: From non-abelian bosonization to truncated spectrum methods
We review two important non-perturbative approaches for extracting the physics of low-
dimensional strongly correlated quantum systems. Firstly, we start by providing a …
dimensional strongly correlated quantum systems. Firstly, we start by providing a …
The immune contexture of hepatocellular carcinoma predicts clinical outcome
The general relevance of the immune system for cancer development and therapy is
increasingly recognized. However and although the immune contexture of most human …
increasingly recognized. However and although the immune contexture of most human …
Anomaly and global inconsistency matching: angles, nonlinear sigma model, chains, and generalizations
We discuss the SU (3)/[U (1)× U (1)] nonlinear sigma model in 1+ 1D and, more broadly, its
linearized counterparts. Such theories can be expressed as U (1)× U (1) gauge theories and …
linearized counterparts. Such theories can be expressed as U (1)× U (1) gauge theories and …
Metal-insulator transition and quantum magnetism in the SU (3) Fermi-Hubbard model
We develop a self-consistent variant of the constrained path quantum Monte Carlo approach
which ensures its independence of the trial wave function, and apply the method to compute …
which ensures its independence of the trial wave function, and apply the method to compute …
Exact Diagonalization of Fermi-Hubbard Models
We show how to perform exact diagonalizations of SU (N) Fermi-Hubbard models on L-site
clusters separately in each irreducible representation (irrep) of SU (N). Using the …
clusters separately in each irreducible representation (irrep) of SU (N). Using the …
Universal description of dissipative Tomonaga-Luttinger liquids with spin symmetry: Exact spectrum and critical exponents
K Yamamoto, N Kawakami - Physical Review B, 2023 - APS
Universal scaling relations for dissipative Tomonaga-Luttinger (TL) liquids with SU (N) spin
symmetry are obtained for both fermions and bosons, by using asymptotic Bethe-ansatz …
symmetry are obtained for both fermions and bosons, by using asymptotic Bethe-ansatz …
Topological fractional pum** with alkaline-earth-like atoms in synthetic lattices
Alkaline-earth (-like) atoms, trapped in optical lattices and in the presence of an external
gauge field, can form insulating states at given fractional fillings. We will show that, by …
gauge field, can form insulating states at given fractional fillings. We will show that, by …