We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refrigerator composed of a parametrically driven system that is in contact with a bosonic reservoir where the energy is dumped. We show that the cooling of the oscillator (achieved by the resonant transport of its phonon excitations into the environment) is always stopped by a fundamental heating process that is dominant at sufficiently low temperatures. This process can be described as the nonresonant production of excitation pairs. This result is in close analogy with the recent study that showed that pair production is responsible for enforcing the validity of the dynamical version of the third law of thermodynamics [Phys. Rev. E 95, 012146 (2...
Summarization: We explore nonequilibrium quantum heat transport in nonlinear bosonic systems in the ...
We study theoretically Doppler laser cooling of a cluster of two-level atoms confined in a linear io...
We study laser cooling of two ions that are trapped in a harmonic potential and interact by Coulomb ...
We study the asymptotic dynamics of arbitrary linear quantum open systems that are periodically driv...
Cavity-mediated cooling has the potential to become one of the most efficient techniques to cool mol...
We review the quantum theory of cooling of a mechanical oscillator subject to the radiation pressure...
Optomechanical systems in the well-resolved-sideband regime are ideal for studying a myriad of quant...
Cavity-mediated cooling has the potential to become one of the most efficient techniques to cool mol...
We have made a simple and natural modification of a recent quantum refrigerator model presented by C...
Ground-state cooling ofmesoscopicmechanical resonators is a fundamental requirement for testing of q...
We present a quantum-mechanical theory of the cooling of a cantilever coupled via radiation pressure...
We have recently suggested that a polarisable particle may be cooled by its interaction with a monoc...
Abstract. In recent years, much attention has been paid to the development of techniques which trans...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
We combine the formalisms of Floquet theory and full counting statistics with a Markovian embedding ...
Summarization: We explore nonequilibrium quantum heat transport in nonlinear bosonic systems in the ...
We study theoretically Doppler laser cooling of a cluster of two-level atoms confined in a linear io...
We study laser cooling of two ions that are trapped in a harmonic potential and interact by Coulomb ...
We study the asymptotic dynamics of arbitrary linear quantum open systems that are periodically driv...
Cavity-mediated cooling has the potential to become one of the most efficient techniques to cool mol...
We review the quantum theory of cooling of a mechanical oscillator subject to the radiation pressure...
Optomechanical systems in the well-resolved-sideband regime are ideal for studying a myriad of quant...
Cavity-mediated cooling has the potential to become one of the most efficient techniques to cool mol...
We have made a simple and natural modification of a recent quantum refrigerator model presented by C...
Ground-state cooling ofmesoscopicmechanical resonators is a fundamental requirement for testing of q...
We present a quantum-mechanical theory of the cooling of a cantilever coupled via radiation pressure...
We have recently suggested that a polarisable particle may be cooled by its interaction with a monoc...
Abstract. In recent years, much attention has been paid to the development of techniques which trans...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
We combine the formalisms of Floquet theory and full counting statistics with a Markovian embedding ...
Summarization: We explore nonequilibrium quantum heat transport in nonlinear bosonic systems in the ...
We study theoretically Doppler laser cooling of a cluster of two-level atoms confined in a linear io...
We study laser cooling of two ions that are trapped in a harmonic potential and interact by Coulomb ...