We propose a method to calculate finite-temperature properties of a quantum many-body system for a microcanonical ensemble by introducing a pure quantum state named here an energy-filtered random-phase state, which is also a potentially promising application of near-term quantum computers. In our formalism, a microcanonical ensemble is specified by two parameters, i.e., the energy of the system and its associated energy window. Accordingly, the density of states is expressed as a sum of Gaussians centered at the target energy with its spread corresponding to the width of the energy window. We then show that the thermodynamic quantities such as entropy and temperature are calculated by evaluating the trace of the time-evolution operator and ...
The capabilities of a new approach towards the foundations of Statistical Mechanics are explored. Th...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
Descriptions of molecular systems usually refer to two distinct theoretical frameworks. On the one h...
<p>Thesis: Submitted for the degree of Doctor of Philosophy of the University of London (Imperial Co...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
We study a distribution of thermal states given by random Hamiltonians with a local structure. We sh...
We present a quantum algorithm for the microcanonical thermal pure quantum (TPQ) method, which has a...
This thesis introduces the concept of "thermal pure quantum (TPQ) states", which are pure quantum st...
This thesis introduces the concept of "thermal pure quantum (TPQ) states", which are pure quantum st...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
The Quantum Random Energy Model (QREM) is a random matrix of Anderson-type which describes effects o...
A new microcanonical equilibrium state is introduced for quantum systems with finite-dimensional sta...
The capabilities of a new approach towards the foundations of Statistical Mechanics are explored. Th...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
Descriptions of molecular systems usually refer to two distinct theoretical frameworks. On the one h...
<p>Thesis: Submitted for the degree of Doctor of Philosophy of the University of London (Imperial Co...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
We study a distribution of thermal states given by random Hamiltonians with a local structure. We sh...
We present a quantum algorithm for the microcanonical thermal pure quantum (TPQ) method, which has a...
This thesis introduces the concept of "thermal pure quantum (TPQ) states", which are pure quantum st...
This thesis introduces the concept of "thermal pure quantum (TPQ) states", which are pure quantum st...
The grand canonical ensemble lies at the core of quantum and classical statistical mechanics. A smal...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
The Quantum Random Energy Model (QREM) is a random matrix of Anderson-type which describes effects o...
A new microcanonical equilibrium state is introduced for quantum systems with finite-dimensional sta...
The capabilities of a new approach towards the foundations of Statistical Mechanics are explored. Th...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...