We investigate synchronization effects in quantum self-sustained oscillators theoretically using the micromaser as a model system. We use the probability distribution for the relative phase as a tool for quantifying the emergence of preferred phases when two micromasers are coupled together. Using perturbation theory, we show that the behavior of the phase distribution is strongly dependent on exactly how the oscillators are coupled. In the quantum regime where photon occupation numbers are low we find that although synchronization effects are rather weak, they are nevertheless significantly stronger than expected from a semiclassical description of the phase dynamics. We also compare the behavior of the phase distribution with the mutual i...
We study the phenomenon of synchronization in pairs of doubly clamped, mechanically coupled silicon ...
Classically, the tendency towards spontaneous synchronization is strongest if the natural frequencie...
Spontaneous synchronization is a fundamental phenomenon, important in many theoretical studies and a...
We investigate synchronization effects in quantum self-sustained oscillators theoretically using the...
Synchronisation has been explored extensively for classical systems from the mid-1600s, and is a phe...
We introduce a simple model system to study synchronization theoretically in quantum oscillators tha...
Recently, several studies have investigated synchronization in quantum-mechanical limit-cycle oscill...
Phase diagrams of the micromaser system are mapped out in terms of the physical parameters at hand l...
In this work, we investigate novel phase synchronisation features that occur in bistable oscillators...
In this paper we investigate the various aspects of noise and order in the micromaser system. In par...
© 2018 The Author(s). The Author(s). Published by IOP Publishing on behalf of the Institute of Physi...
In recent years, significant progress has been made to push micro-, nano-, and optomechanical system...
We theoretically describe macroscopic quantum synchronization effects occurring in a network of all-...
Spontaneous synchronization is a significant collective behavior of weakly coupled systems. Due to t...
We study how quantum and thermal noise affects synchronization of two optomechanical limit-cycle osc...
We study the phenomenon of synchronization in pairs of doubly clamped, mechanically coupled silicon ...
Classically, the tendency towards spontaneous synchronization is strongest if the natural frequencie...
Spontaneous synchronization is a fundamental phenomenon, important in many theoretical studies and a...
We investigate synchronization effects in quantum self-sustained oscillators theoretically using the...
Synchronisation has been explored extensively for classical systems from the mid-1600s, and is a phe...
We introduce a simple model system to study synchronization theoretically in quantum oscillators tha...
Recently, several studies have investigated synchronization in quantum-mechanical limit-cycle oscill...
Phase diagrams of the micromaser system are mapped out in terms of the physical parameters at hand l...
In this work, we investigate novel phase synchronisation features that occur in bistable oscillators...
In this paper we investigate the various aspects of noise and order in the micromaser system. In par...
© 2018 The Author(s). The Author(s). Published by IOP Publishing on behalf of the Institute of Physi...
In recent years, significant progress has been made to push micro-, nano-, and optomechanical system...
We theoretically describe macroscopic quantum synchronization effects occurring in a network of all-...
Spontaneous synchronization is a significant collective behavior of weakly coupled systems. Due to t...
We study how quantum and thermal noise affects synchronization of two optomechanical limit-cycle osc...
We study the phenomenon of synchronization in pairs of doubly clamped, mechanically coupled silicon ...
Classically, the tendency towards spontaneous synchronization is strongest if the natural frequencie...
Spontaneous synchronization is a fundamental phenomenon, important in many theoretical studies and a...