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Excitation Spectra of Square Lattice Antiferromagnets

Theoretical Explanation of Experimental Observations

  • Bastien┬áDalla Piazza

Part of the Springer Theses book series (Springer Theses)

Table of contents

  1. Front Matter
    Pages i-xvii
  2. Back Matter
    Pages 151-176

About this book

Introduction

This thesis presents a qualitative advance in our understanding of quantum effects in layered magnetic materials. The nearest neighbor Heisenberg ferromagnetic ranks among the oldest and most fundamental models of quantum many body effects. It has long been established that in one dimension quantum fluctuations lead to a quantum disordered ground state with fractional excitations called spinons." In two dimensions, the ground state of the Heisenberg model displays static order and to first approximation the dynamics can be described as semi-classical spin waves. Through theoretical advances the author demonstrates that at high energy around particular points in reciprocal space these semi-classical spin-waves deconfine into fractional excitations akin to the one-dimensional spinons. He thereby provides the first explanation of a long-standing experimental observation.

In the second half of his thesis Bastien Dalla Piazza develops a unified description of the magnetic excitation spectra of a range of cuprate parent compounds to the high temperature superconductors.

Keywords

Quantum magnetism Square lattice antiferromagnet Spin-wave dispersion Magnetic zone-boundary anomaly Fractionalized excitations Insulating parent compounds Cuprate superconductors

Authors and affiliations

  • Bastien┬áDalla Piazza
    • 1
  1. 1.Institute of Condensed Matter PhysicsLaboratory for Quantum Magnetism, EPFLLausanneSwitzerland

Bibliographic information

  • DOI https://doi.org/10.1007/978-3-319-26419-6
  • Copyright Information Springer International Publishing Switzerland 2016
  • Publisher Name Springer, Cham
  • eBook Packages Physics and Astronomy
  • Print ISBN 978-3-319-26418-9
  • Online ISBN 978-3-319-26419-6
  • Series Print ISSN 2190-5053
  • Series Online ISSN 2190-5061
  • Buy this book on publisher's site
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