We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave cavity, where the CPT serves as a charge tunable quantum inductor to facilitate ultra-strong coupling between photons in the cavity and a nano- to meso-scale mechanical resonator. The mechanical resonator is capacitively coupled to the CPT, such that mechanical displacements of the resonator cause a shift in the CPT inductance and hence the cavity's resonant frequency. The amplification provided by the CPT is sufficient for the zero point motion of the mechanical resonator alone to cause a significant change in the cavity resonance. Conversely, a single photon in the cavity causes a shift in the mechanical resonator position on the order of ...
Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
Exploring quantum physics in macroscopic systems and manipulating these systems for various technolo...
We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave...
We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave...
Cavity optomechanics is showing promise for studying quantum mechanics in large systems. However, th...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
We investigate a general scheme for generating, either dynamically or in the steady state, continuou...
| openaire: EC/H2020/670743/EU//QuDeT | openaire: EC/H2020/722923/EU//OMT | openaire: EC/H2020/82410...
The ability to control the motion of mechanical systems through interaction with light has opened th...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
We show that a cavity optomechanical system formed by a mechanical resonator simultaneously coupled ...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
We propose a superconducting circuit comprising a dc superconducting quantum interference device wit...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
Exploring quantum physics in macroscopic systems and manipulating these systems for various technolo...
We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave...
We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave...
Cavity optomechanics is showing promise for studying quantum mechanics in large systems. However, th...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
We investigate a general scheme for generating, either dynamically or in the steady state, continuou...
| openaire: EC/H2020/670743/EU//QuDeT | openaire: EC/H2020/722923/EU//OMT | openaire: EC/H2020/82410...
The ability to control the motion of mechanical systems through interaction with light has opened th...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
We show that a cavity optomechanical system formed by a mechanical resonator simultaneously coupled ...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
We propose a superconducting circuit comprising a dc superconducting quantum interference device wit...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
Exploring quantum physics in macroscopic systems and manipulating these systems for various technolo...