The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A small system thermalizes to this ensemble while exchanging heat and particles with a bath. A quantum system may exchange quantities represented by operators that fail to commute. Whether such a system thermalizes and what form the thermal state has are questions about truly quantum thermodynamics. Here we investigate this thermal state from three perspectives. First, we introduce an approximate microcanonical ensemble. If this ensemble characterizes the system-and-bath composite, tracing out the bath yields the system’s thermal state. This state is expected to be the equilibrium point, we argue, of typical dynamics. Finally, we define a resource-...
We show that the quantum statistical mechanics (QSM) describing the quantum and thermal properties o...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
A model for the thermodynamics of a quantum heat bath is introduced. Under the assumption that the b...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
The resource theory of thermal operations, an established model for small-scale thermodynamics, prov...
The circumstances under which a system reaches thermal equilibrium, and how to derive this from basi...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
We show that the quantum statistical mechanics (QSM) describing the quantum and thermal properties o...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
A model for the thermodynamics of a quantum heat bath is introduced. Under the assumption that the b...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
The resource theory of thermal operations, an established model for small-scale thermodynamics, prov...
The circumstances under which a system reaches thermal equilibrium, and how to derive this from basi...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
We show that the quantum statistical mechanics (QSM) describing the quantum and thermal properties o...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
A model for the thermodynamics of a quantum heat bath is introduced. Under the assumption that the b...