Engineered dissipation can be used for quantum state preparation. This is achieved with a suitably engineered coupling to a dissipative cold reservoir usually formed by an electromagnetic mode. In the field of cavity electro- and optomechanics, the electromagnetic cavity naturally serves as a cold reservoir for the mechanical mode. Here, we realize the opposite scenario and engineer a mechanical oscillator cooled close to its ground state into a cold dissipative reservoir for microwave photons in a superconducting circuit. By tuning the coupling to this dissipative mechanical reservoir, we demonstrate dynamical backaction control of the microwave field, leading to stimulated emission and maser action. Moreover, the reservoir can function as...
There has recently been considerable interest in the study of mechanical oscillators in the quantum ...
Micro- and nanoscale optical or microwave cavities are used in a wide range of classical application...
In this thesis, we study an engineered mechanical oscillator coupled to a microwave cavity. In a pre...
Engineered dissipation can be used for quantum state preparation. This is achieved with a suitably e...
A primary challenge in quantum science and technology is to isolate the fragile quantum states from ...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
The development of mechanical oscillator-based hybrid quantum systems has allowed quantum state prep...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
We study an optomechanical system in which a microwave field and an optical field are coupled to the...
A simple feedback scheme can be used to operate efficiently a microwave-quantum-illumination device ...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
A process which strongly amplifies both quadrature amplitudes of an oscillatory signal necessarily a...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
In this thesis, we have studied an ultrahigh quality factor mechanical oscillator coupled to a micro...
Micro- and nanoscale optical or microwave cavities are used in a wide range of classical application...
There has recently been considerable interest in the study of mechanical oscillators in the quantum ...
Micro- and nanoscale optical or microwave cavities are used in a wide range of classical application...
In this thesis, we study an engineered mechanical oscillator coupled to a microwave cavity. In a pre...
Engineered dissipation can be used for quantum state preparation. This is achieved with a suitably e...
A primary challenge in quantum science and technology is to isolate the fragile quantum states from ...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
The development of mechanical oscillator-based hybrid quantum systems has allowed quantum state prep...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
We study an optomechanical system in which a microwave field and an optical field are coupled to the...
A simple feedback scheme can be used to operate efficiently a microwave-quantum-illumination device ...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
A process which strongly amplifies both quadrature amplitudes of an oscillatory signal necessarily a...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
In this thesis, we have studied an ultrahigh quality factor mechanical oscillator coupled to a micro...
Micro- and nanoscale optical or microwave cavities are used in a wide range of classical application...
There has recently been considerable interest in the study of mechanical oscillators in the quantum ...
Micro- and nanoscale optical or microwave cavities are used in a wide range of classical application...
In this thesis, we study an engineered mechanical oscillator coupled to a microwave cavity. In a pre...