Synchronization of two dissipatively coupled Van der Pol oscillators in the quantum regime is studied. Due to quantum noise strict frequency locking is absent and is replaced by a crossover from weak to strong frequency entrainment. The differences to the behavior of one quantum Van der Pol oscillator subject to an external drive are discussed. Moreover, a possible experimental realization of two coupled quantum Van der Pol oscillators in an optomechanical setting is described
We study the synchronization of dissipatively coupled van der Pol oscillators in the quantum limit, ...
Recently, several studies have investigated synchronization in quantum-mechanical limit-cycle oscill...
We employ a quantum trajectory approach to characterize synchronization and phase-locking between op...
© 2014 by Wiley-VCH Verlag GmbH & Co. KGaA. Synchronization of two dissipatively coupled Van der P...
Synchronization is a universal phenomenon that is important both in fundamental studies and in techn...
Synchronisation refers to the tendency of coupled oscillators to move in phase with one another over...
Synchronisation is the remarkable phenomenon of in-phase movement of coupled oscillators during a pr...
We study how quantum and thermal noise affects synchronization of two optomechanical limit-cycle osc...
Synchronisation has been explored extensively for classical systems from the mid-1600s, and is a phe...
Optomechanical systems driven by an effective blue-detuned laser can exhibit self-sustained oscillat...
We study the synchronization of a Van der Pol self-oscillator with Kerr anharmonicity to an external...
Optomechanical systems driven by an effective blue-detuned laser can exhibit self-sustained oscillat...
Two oscillators coupled to a two-level system which in turn is coupled to an infinite number of osci...
Trabajo presentado en Quantum Information in Spain (ICE 6), celebrado online del 10 al 14 de mayo de...
Two oscillators coupled to a two-level system which in turn is coupled to an infinite number of osci...
We study the synchronization of dissipatively coupled van der Pol oscillators in the quantum limit, ...
Recently, several studies have investigated synchronization in quantum-mechanical limit-cycle oscill...
We employ a quantum trajectory approach to characterize synchronization and phase-locking between op...
© 2014 by Wiley-VCH Verlag GmbH & Co. KGaA. Synchronization of two dissipatively coupled Van der P...
Synchronization is a universal phenomenon that is important both in fundamental studies and in techn...
Synchronisation refers to the tendency of coupled oscillators to move in phase with one another over...
Synchronisation is the remarkable phenomenon of in-phase movement of coupled oscillators during a pr...
We study how quantum and thermal noise affects synchronization of two optomechanical limit-cycle osc...
Synchronisation has been explored extensively for classical systems from the mid-1600s, and is a phe...
Optomechanical systems driven by an effective blue-detuned laser can exhibit self-sustained oscillat...
We study the synchronization of a Van der Pol self-oscillator with Kerr anharmonicity to an external...
Optomechanical systems driven by an effective blue-detuned laser can exhibit self-sustained oscillat...
Two oscillators coupled to a two-level system which in turn is coupled to an infinite number of osci...
Trabajo presentado en Quantum Information in Spain (ICE 6), celebrado online del 10 al 14 de mayo de...
Two oscillators coupled to a two-level system which in turn is coupled to an infinite number of osci...
We study the synchronization of dissipatively coupled van der Pol oscillators in the quantum limit, ...
Recently, several studies have investigated synchronization in quantum-mechanical limit-cycle oscill...
We employ a quantum trajectory approach to characterize synchronization and phase-locking between op...