Cooling quantum systems is arguably one of the most important thermodynamic tasks connected to modern quantum technologies and an interesting question from a foundational perspective. It is thus of no surprise that many different theoretical cooling schemes have been proposed, differing in the assumed control paradigm and complexity, and operating either in a single cycle or in steady state limits. Working out bounds on quantum cooling has since been a highly context dependent task with multiple answers, with no general result that holds independent of assumptions. In this letter we derive a universal bound for cooling quantum systems in the limit of infinite cycles (or steady state regimes) that is valid for any control paradigm and machin...
Preparing a quantum system in a pure state is ultimately limited by the nature of the system\u2019s ...
Quantum technologies require pure states, which are often generated by extreme refrigeration. Heat-b...
The purpose of this thesis is to design and analyze a new class of quantum thermal machines. The mac...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
We study the asymptotic dynamics of arbitrary linear quantum open systems that are periodically driv...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
We study dynamic cooling, where an externally driven two-level system is cooled via reservoir, a qua...
A first-principle reciprocating quantum refrigerator is investigated to determine the limitations of...
Refrigerators use a thermodynamic cycle to move thermal energy from a cold reservoir to a hot one. I...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...
Preparing a quantum system in a pure state is ultimately limited by the nature of the system\u2019s ...
Quantum technologies require pure states, which are often generated by extreme refrigeration. Heat-b...
The purpose of this thesis is to design and analyze a new class of quantum thermal machines. The mac...
In classical thermodynamics the work cost of control can typically be neglected. On the contrary, in...
The emergence of the laws of thermodynamics from the laws of quantum mechanics is an unresolved issu...
We study the asymptotic dynamics of arbitrary linear quantum open systems that are periodically driv...
We design a measurement-based quantum refrigerator with an arbitrary number of qubits situated in a ...
In 2013, quantum thermal machines were shown to exhibit quantum supremacy, an enhanced performance b...
cooling, absolute zero temperature Quantum thermodynamics supplies a consistent description of quant...
Thermodynamics is a branch of science blessed by an unparalleled combination of generality of scope ...
The derivation of general performance benchmarks is important in the design of highly optimized heat...
We study dynamic cooling, where an externally driven two-level system is cooled via reservoir, a qua...
A first-principle reciprocating quantum refrigerator is investigated to determine the limitations of...
Refrigerators use a thermodynamic cycle to move thermal energy from a cold reservoir to a hot one. I...
We investigate, theoretically and experimentally, the thermodynamic performance of a minimal three-q...
Preparing a quantum system in a pure state is ultimately limited by the nature of the system\u2019s ...
Quantum technologies require pure states, which are often generated by extreme refrigeration. Heat-b...
The purpose of this thesis is to design and analyze a new class of quantum thermal machines. The mac...