A cornerstone assumption that most literature on discrete time crystals has relied on is that homogeneous Floquet systems generally heat to a featureless infinite temperature state, an expectation that motivated researchers in the field to mostly focus on many-body localized systems. Some works have, however, shown that the standard diagnostics for time crystallinity apply equally well to clean settings without disorder. This fact raises the question whether a homogeneous discrete time crystal is possible in which the originally expected heating is evaded. Studying both a localized and an homogeneous model with short-range interactions, we clarify this issue showing explicitly the key differences between the two cases. On the one hand, our ...
In the presence of interactions, a closed, homogeneous (disorder-free) many-body system is believed ...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
While a clean, driven system generically absorbs energy until it reaches "infinite temperature," it ...
In a periodically driven (Floquet) system, there is the possibility for new phases of matter, not pr...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
This thesis is concerned with phases of matter, one of the central notions in condensed matter physi...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
Following the recent realization that periodically driven quantum matter can support new types of sp...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We construct a class of period-n-tupling discrete time crystals based on Zn clock variables, for all...
In the presence of interactions, a closed, homogeneous (disorder-free) many-body system is believed ...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
While a clean, driven system generically absorbs energy until it reaches "infinite temperature," it ...
In a periodically driven (Floquet) system, there is the possibility for new phases of matter, not pr...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
This thesis is concerned with phases of matter, one of the central notions in condensed matter physi...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
Conventional wisdom suggests that the long-time behavior of isolated interacting periodically driven...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
Following the recent realization that periodically driven quantum matter can support new types of sp...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We construct a class of period-n-tupling discrete time crystals based on Zn clock variables, for all...
In the presence of interactions, a closed, homogeneous (disorder-free) many-body system is believed ...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...