Katherine A. Schreiber Schreiber Ground States of the Two-Dimensional Electron System at Half-Filling under Hydrostatic Pressure

Ground States of the Two-Dimensional Electron System at Half-Filling under Hydrostatic Pressure

von Katherine A. Schreiber

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Beschreibung

This thesis presents the discovery of a surprising phase transition between a topological and a broken symmetry phase. Phase transitions between broken symmetry phases involve a change in symmetry and those between topological phases require a change in topological order; in rare cases, however, transitions may occur between these two broad classes of phases in which the vanishing of the topological order is accompanied by the emergence of a broken symmetry. This thesis describes observations of such a special phase transition in the two-dimensional electron gas confined in the GaAs/AlGaAs structures. When tuned by hydrostatic pressure, the ν = 5/2 and ν = 7/2 fractional quantum Hall states, believed to be prototypical non-Abelian topological phases of the Pfaffian universality class, give way to an electronic nematic phase. Remarkably, the fractional quantum Hall states involved are due to pairing of emergent particles called composite fermions. The findings reported here, therefore,provide an interesting example of competition of pairing and nematicity. This thesis provides an introduction to quantum Hall physics of the two-dimensional electron gas, contains details of the high pressure experiments, and offers a discussion of the ramifications and of the origins of the newly reported phase transition.


This thesis presents the discovery of a surprising phase transition between a topological and a broken symmetry phase. Phase transitions between broken symmetry phases involve a change in symmetry and those between topological phases require a change in topological order; in rare cases, however, transitions may occur between these two broad classes of phases in which the vanishing of the topological order is accompanied by the emergence of a broken symmetry. This thesis describes observations of such a special phase transition in the two-dimensional electron gas confined in the GaAs/AlGaAs structures. When tuned by hydrostatic pressure, the ν = 5/2 and ν = 7/2 fractional quantum Hall states, believed to be prototypical non-Abelian topological phases of the Pfaffian universality class, give way to an electronic nematic phase. Remarkably, the fractional quantum Hall states involved are due to pairing of emergent particles called composite fermions. The findings reported here, therefore,provide an interesting example of competition of pairing and nematicity. This thesis provides an introduction to quantum Hall physics of the two-dimensional electron gas, contains details of the high pressure experiments, and offers a discussion of the ramifications and of the origins of the newly reported phase transition.


Nominated as an outstanding PhD thesis by Purdue University Includes an accessible introduction to fractional quantum Hall states Provides new insights into the ? = 5/2 fractional quantum Hall state

Autor*in

Katherine A. Schreiber

Themen in »Ground States of the Two-Dimensional Electron System at Half-Filling under Hydrostatic Pressure«

fractional quantum hall state nematicity composite fermion hydrostatic pressure quantum phase transition quantum Hall nematic phase fractional quantum Hall state-to-nematic phase transition gallium arsenide

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Details

ISBN: 9783030263249
Verlag: Springer International Publishing
Erscheinung: 20.09.2020

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