Descriptions of molecular systems usually refer to two distinct theoretical frameworks. On the one hand the quantum pure state, i.e., the wavefunction, of an isolated system is determined to calculate molecular properties and their time evolution according to the unitary Schrodinger equation. On the other hand a mixed state, i.e., a statistical density matrix, is the standard formalism to account for thermal equilibrium, as postulated in the microcanonical quantum statistics. In the present paper an alternative treatment relying on a statistical analysis of the possible wavefunctions of an isolated system is presented. In analogy with the classical ergodic theory, the time evolution of the wavefunction determines the probability distributio...
An ideal measurement on a system S by an apparatus A is approached in a minimalist, statistical form...
A new microcanonical equilibrium state is introduced for quantum systems with finite-dimensional sta...
A model for the thermodynamics of a quantum heat bath is introduced. Under the assumption that the b...
Investigation on foundational aspects of quantum statistical mechanics recently entered a renaissanc...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
A system composed of identical spins and described by a quantum mechanical pure state is analyzed wi...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
The capabilities of a new approach towards the foundations of Statistical Mechanics are explored. Th...
The standard assumption for the equilibrium microcanonical state in quantum mechanics, that the syst...
The standard assumption for the equilibrium microcanonical state in quantum mechanics, that the syst...
<p>Thesis: Submitted for the degree of Doctor of Philosophy of the University of London (Imperial Co...
We propose a method to calculate finite-temperature properties of a quantum many-body system for a m...
Equilibrium statistics of Hamiltonian systems is correctly described by the microcanonical ensemble...
A probability distribution encodes all the statistics of its corresponding random variable, hence it...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
An ideal measurement on a system S by an apparatus A is approached in a minimalist, statistical form...
A new microcanonical equilibrium state is introduced for quantum systems with finite-dimensional sta...
A model for the thermodynamics of a quantum heat bath is introduced. Under the assumption that the b...
Investigation on foundational aspects of quantum statistical mechanics recently entered a renaissanc...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
A system composed of identical spins and described by a quantum mechanical pure state is analyzed wi...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
The capabilities of a new approach towards the foundations of Statistical Mechanics are explored. Th...
The standard assumption for the equilibrium microcanonical state in quantum mechanics, that the syst...
The standard assumption for the equilibrium microcanonical state in quantum mechanics, that the syst...
<p>Thesis: Submitted for the degree of Doctor of Philosophy of the University of London (Imperial Co...
We propose a method to calculate finite-temperature properties of a quantum many-body system for a m...
Equilibrium statistics of Hamiltonian systems is correctly described by the microcanonical ensemble...
A probability distribution encodes all the statistics of its corresponding random variable, hence it...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
An ideal measurement on a system S by an apparatus A is approached in a minimalist, statistical form...
A new microcanonical equilibrium state is introduced for quantum systems with finite-dimensional sta...
A model for the thermodynamics of a quantum heat bath is introduced. Under the assumption that the b...