It is desirable to observe synchronization of quantum systems in the quantum regime, defined by the low number of excitations and a highly nonclassical steady state of the self-sustained oscillator. Several existing proposals of observing synchronization in the quantum regime suffer from the fact that the noise statistics overwhelm synchronization in this regime. Here, we resolve this issue by driving a self-sustained oscillator with a squeezing Hamiltonian instead of a harmonic drive and analyze this system in the classical and quantum regime. We demonstrate that strong entrainment is possible for small values of squeezing, and in this regime, the states are nonclassical. Furthermore, we show that the quality of synchronization measured by...
We study the synchronization of a Van der Pol self-oscillator with Kerr anharmonicity to an external...
We introduce and characterize two different measures which quantify the level of synchronization of ...
According to quantum mechanics, a harmonic oscillator can never be completely at rest. Even in the g...
It is desirable to observe synchronization of quantum systems in the quantum regime, defined by the ...
It is desirable to observe synchronization of quantum systems in the quantum regime, defined by the ...
Synchronization is a universal phenomenon that is important both in fundamental studies and in techn...
In recent years, significant progress has been made to push micro-, nano-, and optomechanical system...
We revisit quantum state preparation of an oscillator by continuous linear position measurement. Qui...
Classically, the tendency towards spontaneous synchronization is strongest if the natural frequencie...
We develop a systematic theory of quantum fluctuations in the driven optical parametric oscillator, ...
Squeezing of quantum and classical fluctuations of one of the quadratures of a vibrational mode enab...
Synchronisation has been explored extensively for classical systems from the mid-1600s, and is a phe...
21 pages, 15 figuresThe interaction strength of an oscillator to a qubit grows with the oscillator's...
In this paper, we investigate into the numerical and analytical relationship between the dynamically...
The focus of this thesis is to investigate the effects of quantum squeezing implementation toward th...
We study the synchronization of a Van der Pol self-oscillator with Kerr anharmonicity to an external...
We introduce and characterize two different measures which quantify the level of synchronization of ...
According to quantum mechanics, a harmonic oscillator can never be completely at rest. Even in the g...
It is desirable to observe synchronization of quantum systems in the quantum regime, defined by the ...
It is desirable to observe synchronization of quantum systems in the quantum regime, defined by the ...
Synchronization is a universal phenomenon that is important both in fundamental studies and in techn...
In recent years, significant progress has been made to push micro-, nano-, and optomechanical system...
We revisit quantum state preparation of an oscillator by continuous linear position measurement. Qui...
Classically, the tendency towards spontaneous synchronization is strongest if the natural frequencie...
We develop a systematic theory of quantum fluctuations in the driven optical parametric oscillator, ...
Squeezing of quantum and classical fluctuations of one of the quadratures of a vibrational mode enab...
Synchronisation has been explored extensively for classical systems from the mid-1600s, and is a phe...
21 pages, 15 figuresThe interaction strength of an oscillator to a qubit grows with the oscillator's...
In this paper, we investigate into the numerical and analytical relationship between the dynamically...
The focus of this thesis is to investigate the effects of quantum squeezing implementation toward th...
We study the synchronization of a Van der Pol self-oscillator with Kerr anharmonicity to an external...
We introduce and characterize two different measures which quantify the level of synchronization of ...
According to quantum mechanics, a harmonic oscillator can never be completely at rest. Even in the g...