Here we provide a theoretical framework to analyze discrete time-crystalline phases (DTC) in open quantum many-body systems. As a particular realization, we choose a quantum many-body system that exhibits cascaded prethermalization . The analysis uses a fluctuation-regulated quantum master equation. The master equation captures the dissipative effects of the drive and dipolar coupling on the dynamics regularized by the thermal fluctuations. We find that the dissipators from the drive and the dipolar interactions lend stability to the dynamics and are directly responsible for the robustness. Specifically, we find that longer fluctuation correlation time enhances the stability of DTC. Our results are in good agreement with the experiments. Fi...
We consider a dissipative quantum Ising model periodically driven by a train of $\pi$-pulses and inv...
Continuous time crystals (CTCs) are characterized by sustained oscillations that break the time tran...
Discrete time-crystals are periodically driven quantum many-body systems with broken discrete-time t...
An ergodic system subjected to an external periodic drive will be generically heated to infinite tem...
Discrete time crystals (DTCs) are a many-body state of matter whose dynamics are slower than the for...
We elucidate the role that the dissipation in a bosonic channel plays in the prevalence and stabilit...
We elucidate the role that the dissipation in a bosonic channel plays in the prevalence and stabilit...
© 2019 American Physical Society. We describe a general and simple paradigm for discrete time crysta...
Periodically driven (Floquet) systems are described by time dependent Hamiltonians that possess disc...
We discuss the emergence of non-stationarity in open quantum many-body systems. This leads us to the...
We establish a link between metastability and a discrete time-crystalline phase in a periodically dr...
While a clean, driven system generically absorbs energy until it reaches "infinite temperature," it ...
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...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We consider a dissipative quantum Ising model periodically driven by a train of $\pi$-pulses and inv...
Continuous time crystals (CTCs) are characterized by sustained oscillations that break the time tran...
Discrete time-crystals are periodically driven quantum many-body systems with broken discrete-time t...
An ergodic system subjected to an external periodic drive will be generically heated to infinite tem...
Discrete time crystals (DTCs) are a many-body state of matter whose dynamics are slower than the for...
We elucidate the role that the dissipation in a bosonic channel plays in the prevalence and stabilit...
We elucidate the role that the dissipation in a bosonic channel plays in the prevalence and stabilit...
© 2019 American Physical Society. We describe a general and simple paradigm for discrete time crysta...
Periodically driven (Floquet) systems are described by time dependent Hamiltonians that possess disc...
We discuss the emergence of non-stationarity in open quantum many-body systems. This leads us to the...
We establish a link between metastability and a discrete time-crystalline phase in a periodically dr...
While a clean, driven system generically absorbs energy until it reaches "infinite temperature," it ...
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...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We consider a dissipative quantum Ising model periodically driven by a train of $\pi$-pulses and inv...
Continuous time crystals (CTCs) are characterized by sustained oscillations that break the time tran...
Discrete time-crystals are periodically driven quantum many-body systems with broken discrete-time t...