The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issue. The generation of the third law of thermodynamics from quantum dynamics is analysed. The scaling of the optimal cooling power of a reciprocating quantum refrigerator is sought as a function of the cold bath temperature as Tc $\rightarrow$ 0. The working medium consists of noninteracting particles in a harmonic potential. Two closed-form solutions of the refrigeration cycle are analyzed, and compared to a numerical optimization scheme, focusing on cooling toward zero temperature. The optimal cycle is characterized by linear relations between the heat extracted from the cold bath, the energy level spacing of the working medium and the temper...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from...
[eng] Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the re...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
A first-principle reciprocating quantum refrigerator is investigated to determine the limitations of...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
We have made a simple and natural modification of a recent quantum refrigerator model presented by C...
Cooling quantum systems is arguably one of the most important thermodynamic tasks connected to moder...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
A reciprocating quantum refrigerator is analyzed with the intention to study the limitations imposed...
We study the asymptotic dynamics of arbitrary linear quantum open systems that are periodically driv...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
The unattainability principle (UP) is an operational formulation of the third law of thermodynamics ...
The free energy of a quantum oscillator in an arbitrary heat bath at a temperature T is given by a "...
The first in a long series of papers by John T. Lewis, in collaboration with G. W. Ford and the pres...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from...
[eng] Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the re...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
A first-principle reciprocating quantum refrigerator is investigated to determine the limitations of...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
We have made a simple and natural modification of a recent quantum refrigerator model presented by C...
Cooling quantum systems is arguably one of the most important thermodynamic tasks connected to moder...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
A reciprocating quantum refrigerator is analyzed with the intention to study the limitations imposed...
We study the asymptotic dynamics of arbitrary linear quantum open systems that are periodically driv...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
The unattainability principle (UP) is an operational formulation of the third law of thermodynamics ...
The free energy of a quantum oscillator in an arbitrary heat bath at a temperature T is given by a "...
The first in a long series of papers by John T. Lewis, in collaboration with G. W. Ford and the pres...
We analyze the lowest achievable temperature for a mechanical oscillator coupled with a quantum refr...
Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from...
[eng] Multilevel autonomous quantum thermal machines are discussed. In particular, we explore the re...