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عنوان
Thermalization and its breakdown in isolated quantum systems

پدید آورنده
Garrison, James Robert

موضوع

رده

کتابخانه
Center and Library of Islamic Studies in European Languages

محل استقرار
استان: Qom ـ شهر: Qom

Center and Library of Islamic Studies in European Languages

تماس با کتابخانه : 32910706-025

NATIONAL BIBLIOGRAPHY NUMBER

Number
TL8h7456zf

LANGUAGE OF THE ITEM

.Language of Text, Soundtrack etc
انگلیسی

TITLE AND STATEMENT OF RESPONSIBILITY

Title Proper
Thermalization and its breakdown in isolated quantum systems
General Material Designation
[Thesis]
First Statement of Responsibility
Garrison, James Robert
Subsequent Statement of Responsibility
Fisher, Matthew P. A.

.PUBLICATION, DISTRIBUTION, ETC

Date of Publication, Distribution, etc.
2016

DISSERTATION (THESIS) NOTE

Body granting the degree
Fisher, Matthew P. A.
Text preceding or following the note
2016

SUMMARY OR ABSTRACT

Text of Note
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 information contained in a single eigenstate. Remarkably, our results strongly suggest that a single eigenstate can contain information about energy densities-and therefore temperatures-far away from the energy density of the eigenstate. Additionally, we study the possible breakdown of quantum thermalization in a model of itinerant electrons on a one-dimensional chain, with both spin and charge degrees of freedom. This model exhibits peculiar properties in the entanglement entropy, the apparent scaling of which is modified from a "volume law" to an "area law" after performing a partial, site-wise measurement on the system. These properties and others suggest that this model realizes a new, non-thermal phase of matter, known as a Quantum Disentangled Liquid (QDL). The putative existence of this phase has striking implications for the foundations of quantum statistical mechanics.

PERSONAL NAME - PRIMARY RESPONSIBILITY

Cecil, Denise L.

PERSONAL NAME - SECONDARY RESPONSIBILITY

Garrison, James Robert

CORPORATE BODY NAME - SECONDARY RESPONSIBILITY

UC Santa Barbara

ELECTRONIC LOCATION AND ACCESS

Electronic name
 مطالعه متن کتاب 

p

[Thesis]
276903

a
Y

Proposal/Bug Report

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