Disorder-free localization has recently emerged as a mechanism for ergodicity breaking in homogeneous lattice gauge theories. In this work we show that this mechanism can lead to unconventional states of quantum matter as the absence of thermalization lifts constraints imposed by equilibrium statistical physics. We study a Kitaev honeycomb model in a skew magnetic field subject to a quantum quench from a fully polarized initial product state and observe nonergodic dynamics as a consequence of disorder-free localization. We find that the system exhibits a subballistic power-law entanglement growth and quantum correlation spreading, which is otherwise typically associated with thermalizing systems. In the asymptotic steady state the Kitaev mo...
A great deal of many-body localization (MBL) has been learnt from the one-dimensional (1D) spin or f...
We study spectral properties and the dynamics after a quench of one-dimensional spinless fermions wi...
A central goal in the study of modern condensed matter physics is the characterization of the dynami...
Isolated, many-body quantum systems, evolving under their intrinsic dynamics, exhibit a multitude of...
Statistical mechanics characterizes systems in or near equilibrium using in terms of a handful of "s...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
We investigate the properties of the Kitaev honeycomb model with both site dilution and exchange ran...
We explore the finite-temperature dynamics of the quasi-1D orbital compass and plaquette Ising model...
We study quantum quenches in two-dimensional lattice gauge theories with fermions coupled to dynamic...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
Despite the exponentially large amount of information required in the quantum description of many-bo...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
Previous studies reveal a crucial effect of symmetries on the properties of a single particle moving...
Disorder-free localization has been recently introduced as a mechanism for ergodicity breaking in lo...
A great deal of many-body localization (MBL) has been learnt from the one-dimensional (1D) spin or f...
We study spectral properties and the dynamics after a quench of one-dimensional spinless fermions wi...
A central goal in the study of modern condensed matter physics is the characterization of the dynami...
Isolated, many-body quantum systems, evolving under their intrinsic dynamics, exhibit a multitude of...
Statistical mechanics characterizes systems in or near equilibrium using in terms of a handful of "s...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
We investigate the properties of the Kitaev honeycomb model with both site dilution and exchange ran...
We explore the finite-temperature dynamics of the quasi-1D orbital compass and plaquette Ising model...
We study quantum quenches in two-dimensional lattice gauge theories with fermions coupled to dynamic...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
Despite the exponentially large amount of information required in the quantum description of many-bo...
The concept of geometrical frustration has led to rich insights into condensed matter physics, espec...
We study the time evolution after a quantum quench in a family of models whose degrees of freedom ar...
Previous studies reveal a crucial effect of symmetries on the properties of a single particle moving...
Disorder-free localization has been recently introduced as a mechanism for ergodicity breaking in lo...
A great deal of many-body localization (MBL) has been learnt from the one-dimensional (1D) spin or f...
We study spectral properties and the dynamics after a quench of one-dimensional spinless fermions wi...
A central goal in the study of modern condensed matter physics is the characterization of the dynami...