Quantum synchronisation enabled by dynamical symmetries and dissipation

New Journal of Physics IOP Publishing 22 (2019) 013026

Authors:

Joseph Tindall, CS Munoz, Berislav Buca, D Jaksch

Abstract:

In nature, instances of synchronisation abound across a diverse range of environments. In the quantum regime, however, synchronisation is typically observed by identifying an appropriate parameter regime in a specific system. In this work we show that this need not be the case, identifying symmetry-based conditions which, when satisfied, guarantee completely synchronous, entangled limit cycles between the individual constituents of a generic open quantum system - no restrictions are placed on its microscopic details. We describe these systems as posssessing a strong dynamical symmetry and we prove that, to first order, they are completely robust to symmetry-breaking perturbations. Using these ideas we identify two central examples where synchronisation arises via this qualitatively new mechanism: a chain of quadratically dephased spin-1s and the many-body charge-dephased Hubbard model. In both cases, due to their dynamical symmetries, perfect phase-locking occurs throughout the system, regardless of the specific microscopic parameters or initial states. Furthermore, when these systems are perturbed, their non-linear responses elicit long-lived signatures of both phase and frequency-locking.

Optical control of the current-voltage relation in stacked superconductors

PHYSICAL REVIEW B 100:13 (2019) ARTN 134510

Authors:

Frank Schlawin, Anastasia SD Dietrich, Dieter Jaksch

Symmetries and conservation laws in quantum trajectories: Dissipative freezing

Physical Review A American Physical Society (APS) 100:4 (2019) 042113

Authors:

Carlos Sánchez Muñoz, Berislav Buča, Joseph Tindall, Alejandro González-Tudela, Dieter Jaksch, Diego Porras

Cavity-mediated unconventional pairing in ultracold fermionic atoms

Physical Review Letters American Physical Society 123 (2019) 133601

Authors:

Frank Schlawin, D Jaksch

Exact large deviation statistics and trajectory phase transition of a deterministic boundary driven cellular automaton

Physical Review E American Physical Society (APS) 100:2 (2019) 020103

Authors:

Berislav Buča, Juan P Garrahan, Tomaž Prosen, Matthieu Vanicat