Dissipative time crystals can appear in spin systems, when the Z 2 symmetry of the Hamiltonian is broken by the environment, and the square of total spin operator S 2 is …
Synchronization is a phenomenon where interacting particles lock their motion and display non-trivial dynamics. Despite intense efforts studying synchronization in systems without …
We present a general approach to derive Lindblad master equations for a subsystem whose dynamics is coupled to dissipative bosonic modes. The derivation relies on a Schrieffer …
Quantum systems evolving unitarily and subject to quantum measurements exhibit various types of non-equilibrium phase transitions, arising from the competition between unitary …
Universality is a powerful concept, which enables making qualitative and quantitative predictions in systems with extensively many degrees of freedom. It finds realizations in …
We study the quantum dynamics of a many-body system subject to coherent evolution and coupled to a non-Markovian bath. We propose a technique to unravel the non-Markovian …
We study the asymptotic bipartite entanglement entropy of the quantum trajectories of a free- fermionic system, when subject to a continuous nonlocal monitoring. The measurements are …
We study the spatiotemporal spreading of correlations in an ensemble of spins due to dissipation characterized by short-and long-range spatial profiles. Such emission channels …
While the recently realized dissipative time crystal in a laser-pumped atom-cavity system in the experiment of Keßler et al.[Phys. Rev. Lett. 127, 043602 (2021) PRLTAO 0031-9007 …