In recent decades, the laws of thermodynamics have been pushed down to smaller and smaller scales, within the field of stochastic thermodynamics and state-of-art experiments performed on mesoscopic systems. But these measurements concern mostly thermal properties of electrons and photons. Here we report on the measurements of thermal fluctuations of a single mechanical mode in-equilibrium with a heat reservoir. The device under study is a nanomechanical beam with a first flexure resonating at 3.8MHz, cooled down to temperatures in the range from 100mK to 400mK. The technique is constructed around a microwave opto-mechanical setup using a cryogenic High Electron Mobility Transistor, and is based on two parametric amplifications implemented i...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
We consider an electromechanical system in which a microwave cavity is coupled to a mechanical reson...
It appears feasible with nanostructures to perform calorimetry at the level of individual thermal ph...
In recent decades, the laws of thermodynamics have been pushed down to smaller and smaller scales, w...
In recent decades, the laws of thermodynamics have been pushed down to smaller and smaller scales, w...
Recent advances in observing and exploiting macroscopic mechanical motion at the quantum limit broug...
Preparing mechanical systems in their lowest possible entropy state, the quantum ground state, start...
Preparing mechanical systems in their lowest possible entropy state, the quantum ground state, start...
International audienceThe nature of the quantum-to-classical crossover remains one of the most chall...
The fields of optomechanics and electromechanics have facilitated numerous advances in the areas of ...
We have observed a quantized limiting value of the thermal conductance for each propagating phonon c...
Using pulsed optical excitation and read-out along with single-phonon-counting techniques, we measur...
| openaire: EC/H2020/732894/EU//HOTWe study the energy-level evolution and ground-state cooling of m...
To date, microscale and nanoscale optomechanical systems have enabled many proof-of-principle quantu...
Dissipation is an inevitable property of a mechanical system and influences the dynamical behavior a...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
We consider an electromechanical system in which a microwave cavity is coupled to a mechanical reson...
It appears feasible with nanostructures to perform calorimetry at the level of individual thermal ph...
In recent decades, the laws of thermodynamics have been pushed down to smaller and smaller scales, w...
In recent decades, the laws of thermodynamics have been pushed down to smaller and smaller scales, w...
Recent advances in observing and exploiting macroscopic mechanical motion at the quantum limit broug...
Preparing mechanical systems in their lowest possible entropy state, the quantum ground state, start...
Preparing mechanical systems in their lowest possible entropy state, the quantum ground state, start...
International audienceThe nature of the quantum-to-classical crossover remains one of the most chall...
The fields of optomechanics and electromechanics have facilitated numerous advances in the areas of ...
We have observed a quantized limiting value of the thermal conductance for each propagating phonon c...
Using pulsed optical excitation and read-out along with single-phonon-counting techniques, we measur...
| openaire: EC/H2020/732894/EU//HOTWe study the energy-level evolution and ground-state cooling of m...
To date, microscale and nanoscale optomechanical systems have enabled many proof-of-principle quantu...
Dissipation is an inevitable property of a mechanical system and influences the dynamical behavior a...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
We consider an electromechanical system in which a microwave cavity is coupled to a mechanical reson...
It appears feasible with nanostructures to perform calorimetry at the level of individual thermal ph...