Charge Quantization and Kondo Quantum Criticality in Few-Channel Mesoscopic Circuits / by Zubair Iftikhar.
2018
QC173.96-174.52
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Title
Charge Quantization and Kondo Quantum Criticality in Few-Channel Mesoscopic Circuits / by Zubair Iftikhar.
Author
ISBN
9783319946856
3319946854
9783319946849
3319946846
3319946854
9783319946849
3319946846
Published
Cham : Springer International Publishing : Imprint: Springer, 2018.
Language
English
Description
1 online resource (xiii, 137 pages) : illustrations.
Item Number
10.1007/978-3-319-94685-6 doi
Call Number
QC173.96-174.52
Dewey Decimal Classification
530.12
Summary
This thesis explores several fundamental topics in mesoscopic circuitries that incorporate few electronic conduction channels. The reported results establish a new state of the art in a field that has been waiting for this kind of experiments for decades. The first experiments address the quantized character of charge in circuits. The thesis discusses the charge quantization criterion, observes the predicted charge quantization scaling, and demonstrates a crossover toward a universal behavior as temperature is increased. In turn, the second set of experiments explores the unconventional quantum critical physics that arises in the multichannel Kondo model. At the symmetric quantum critical point, the predicted universal Kondo fixed points and scaling exponents are observed, and the full numerical renormalization group scaling curves validated. In addition, the thesis explores the crossover from quantum criticality: direct visualization of the development of a quantum phase transition, the parameter space for quantum criticality, as well as universality and scaling behaviors.
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Includes bibliographical references.
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Digital File Characteristics
text file PDF
Series
Springer Theses.
Available in Other Form
Print version: 9783319946849
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Table of Contents
Introduction
Charge Quantization
Multi-channel Kondo Effect
Quantum Phase Transition in Multi-channel Kondo Systems
Outlook.
Charge Quantization
Multi-channel Kondo Effect
Quantum Phase Transition in Multi-channel Kondo Systems
Outlook.