The sensitive measurement of electrical signals is at the heart of modern technology. According to the principles of quantum mechanics, any detector or amplifier necessarily adds a certain amount of noise to the signal, equal to at least the noise added by quantum fluctuations1,2. This quantum limit of added noise has nearly been reached in superconducting devices that take advantage of nonlinearities in Josephson junctions3,4. Here we introduce the concept of the amplification of microwave signals using mechanical oscillation, which seems likely to enable quantum-limited operation. We drive a nanomechanical resonator with a radiation pressure force5,6,7, and provide an experimental demonstration and an analytical description of how a signa...
| openaire: EC/FP7/615755/EU//CAVITYQPD | openaire: EC/H2020/732894/EU//HOT | openaire: EC/H2020/824...
| openaire: EC/FP7/615755/EU//CAVITYQPD | openaire: EC/H2020/732894/EU//HOT | openaire: EC/H2020/824...
Coherent superconducting circuits play a key role in explor-ing the interaction between light and ma...
The sensitive measurement of electrical signals is at the heart of modern technology. According to t...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
A process which strongly amplifies both quadrature amplitudes of an oscillatory signal necessarily a...
Amplifiers are crucial in every experiment carrying out a very sensitive measurement. However, they ...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
A process which strongly amplifies both quadrature amplitudes of an oscillatory signal necessarily a...
International audienceWe explore the nonlinear dynamics of a cavity optomechanical system. Our reali...
Summary. — Amplifiers are crucial in every experiment carrying out a very sensi-tive measurement. Ho...
This thesis explores the coupling of microwave cavities containing a Superconducting QUantum Interfe...
We show how the coherent oscillations of a nanomechanical resonator can be entangled with a microwav...
| openaire: EC/FP7/615755/EU//CAVITYQPD | openaire: EC/H2020/732894/EU//HOT | openaire: EC/H2020/824...
| openaire: EC/FP7/615755/EU//CAVITYQPD | openaire: EC/H2020/732894/EU//HOT | openaire: EC/H2020/824...
Coherent superconducting circuits play a key role in explor-ing the interaction between light and ma...
The sensitive measurement of electrical signals is at the heart of modern technology. According to t...
In the past several years, the field of optomechanics has progressed from proof-of-principle experim...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
High-gain amplifiers of electromagnetic signals operating near the quantum limit are crucial for qua...
A process which strongly amplifies both quadrature amplitudes of an oscillatory signal necessarily a...
Amplifiers are crucial in every experiment carrying out a very sensitive measurement. However, they ...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
A process which strongly amplifies both quadrature amplitudes of an oscillatory signal necessarily a...
International audienceWe explore the nonlinear dynamics of a cavity optomechanical system. Our reali...
Summary. — Amplifiers are crucial in every experiment carrying out a very sensi-tive measurement. Ho...
This thesis explores the coupling of microwave cavities containing a Superconducting QUantum Interfe...
We show how the coherent oscillations of a nanomechanical resonator can be entangled with a microwav...
| openaire: EC/FP7/615755/EU//CAVITYQPD | openaire: EC/H2020/732894/EU//HOT | openaire: EC/H2020/824...
| openaire: EC/FP7/615755/EU//CAVITYQPD | openaire: EC/H2020/732894/EU//HOT | openaire: EC/H2020/824...
Coherent superconducting circuits play a key role in explor-ing the interaction between light and ma...