A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated quantum system will reach thermal equilibrium after waiting a long time. In quantum systems that do thermalize, the long-time expectation value of any “reasonable” operator will match its predicted value in the canonical ensemble. The Eigenstate Thermalization Hypothesis (ETH) posits that this thermalization occurs at the level of each individual energy eigenstate; in fact, any single eigenstate in a microcanonical energy window will predict the expectation values of such operators exactly. In the first part of this dissertation, we identify, for a generic model system, precisely which operators satisfy ETH, as well as limits to the informati...
We investigate the implications of integrability for the existence of quantum disentangled liquid (Q...
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...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
Understanding the evolution towards thermal equilibrium of an iso-lated quantum system is at the fou...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
Statistical mechanics characterizes systems in or near equilibrium using in terms of a handful of "s...
Statistical mechanics characterizes systems in or near equilibrium using in terms of a handful of "s...
The emergence of statistical mechanics for isolated classical systems comes about through chaotic dy...
The emergence of statistical mechanics for isolated classical systems comes about through chaotic dy...
The eigenstate thermalization hypothesis (ETH) posits that the reduced density matrix for a subsyste...
Under the eigenstate thermalization hypothesis (ETH), quantum-quenched systems equilibrate towards c...
Under the eigenstate thermalization hypothesis (ETH), quantum-quenched systems equilibrate towards c...
We investigate the implications of integrability for the existence of quantum disentangled liquid (Q...
We investigate the implications of integrability for the existence of quantum disentangled liquid (Q...
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...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
We study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one...
Understanding the evolution towards thermal equilibrium of an iso-lated quantum system is at the fou...
Statistical mechanics relies on relaxation towards the maximally entropic state in thermal equilibri...
Statistical mechanics characterizes systems in or near equilibrium using in terms of a handful of "s...
Statistical mechanics characterizes systems in or near equilibrium using in terms of a handful of "s...
The emergence of statistical mechanics for isolated classical systems comes about through chaotic dy...
The emergence of statistical mechanics for isolated classical systems comes about through chaotic dy...
The eigenstate thermalization hypothesis (ETH) posits that the reduced density matrix for a subsyste...
Under the eigenstate thermalization hypothesis (ETH), quantum-quenched systems equilibrate towards c...
Under the eigenstate thermalization hypothesis (ETH), quantum-quenched systems equilibrate towards c...
We investigate the implications of integrability for the existence of quantum disentangled liquid (Q...
We investigate the implications of integrability for the existence of quantum disentangled liquid (Q...
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...