We propose a scheme for controlling a radio-frequency mechanical resonator at the quantum level using a superconducting qubit. The mechanical part of the circuit consists of a suspended micrometer-long beam that is embedded in the loop of a superconducting quantum interference device (SQUID) and is connected in parallel to a transmon qubit. Using realistic parameters from recent experiments with similar devices, we show that this configuration can enable a tuneable optomechanical interaction in the single-photon ultrastrong-coupling regime, where the radiation-pressure coupling strength is larger than both the transmon decay rate and the mechanical frequency. We investigate the dynamics of the driven system for a range of coupling strengths...
We introduce the “displacemon” electromechanical architecture that comprises a vibrating nanobeam, e...
We propose a superconducting circuit comprising a dc superconducting quantum interference device wit...
We introduce the “displacemon” electromechanical architecture that comprises a vibrating nanobeam, e...
This thesis explores nonlinear couplings in superconducting circuits with the purpose of achieving q...
Massive mechanical resonators operating at the quantum scale can enable a large variety of applicati...
The field of optomechanics has emerged as leading platform for achieving quantum control of macrosco...
This thesis explores the coupling of microwave cavities containing a Superconducting QUantum Interfe...
Hybrid devices based on the superconducting qubits have emerged as a promising platform for controll...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
We investigate a superconducting interference device (SQUID) with two asymmetric Josephson junctions...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
Coupling electromagnetic waves in a cavity and mechanical vibrations via the radiation pressure of p...
Experiments to probe the basic quantum properties of motional degrees of freedom of mechanical syste...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We introduce the “displacemon” electromechanical architecture that comprises a vibrating nanobeam, e...
We propose a superconducting circuit comprising a dc superconducting quantum interference device wit...
We introduce the “displacemon” electromechanical architecture that comprises a vibrating nanobeam, e...
This thesis explores nonlinear couplings in superconducting circuits with the purpose of achieving q...
Massive mechanical resonators operating at the quantum scale can enable a large variety of applicati...
The field of optomechanics has emerged as leading platform for achieving quantum control of macrosco...
This thesis explores the coupling of microwave cavities containing a Superconducting QUantum Interfe...
Hybrid devices based on the superconducting qubits have emerged as a promising platform for controll...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
We investigate a superconducting interference device (SQUID) with two asymmetric Josephson junctions...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
Coupling electromagnetic waves in a cavity and mechanical vibrations via the radiation pressure of p...
Experiments to probe the basic quantum properties of motional degrees of freedom of mechanical syste...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We introduce the “displacemon” electromechanical architecture that comprises a vibrating nanobeam, e...
We propose a superconducting circuit comprising a dc superconducting quantum interference device wit...
We introduce the “displacemon” electromechanical architecture that comprises a vibrating nanobeam, e...