Fr. 134.00

Structural Studies of Liquids and Glasses Using Aerodynamic Levitation

English · Hardback

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Description

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This thesis presents neutron scattering data that contribute to the understanding of four distinct areas of condensed matter physics, including iso-compositional liquid-liquid phase transitions and the glass formation in rare earth doped BaTi2O5.
In situ aerodynamic levitation with laser heating was combined with neutron scattering in order to study both liquid-liquid phase transitions in (Y2O3)x(Al2O3)1-x and the atomic and magnetic ordering in liquid Invar. Among several significant results, obtained in this case from small angle neutron scattering, was the absence of a phase transition across a range of temperatures and compositions in the yttria aluminates. As these are a principal system in which liquid-liquid phase transitions have been hypothesized, this is an important contribution in a contentious area.

List of contents

Introduction.- Theory of Supercooled Liquids and Glasses.- Experimental Techniques.- Rare Earth Doped Barium Titanate Glass.- Liquid-Liquid Transitions in Y2O3-Al2O3.- Liquid Invar.- Indium Selenide.- Conclusions.

Summary

This thesis presents neutron scattering data that contribute to the understanding of four distinct areas of condensed matter physics, including iso-compositional liquid-liquid phase transitions and the glass formation in rare earth doped BaTi2O5.
In situ aerodynamic levitation with laser heating was combined with neutron scattering in order to study both liquid-liquid phase transitions in (Y2O3)x(Al2O3)1-x and the atomic and magnetic ordering in liquid Invar. Among several significant results, obtained in this case from small angle neutron scattering, was the absence of a phase transition across a range of temperatures and compositions in the yttria aluminates. As these are a principal system in which liquid-liquid phase transitions have been hypothesized, this is an important contribution in a contentious area.

Product details

Authors Thomas Farmer
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 31.07.2014
 
EAN 9783319065748
ISBN 978-3-31-906574-8
No. of pages 113
Dimensions 163 mm x 242 mm x 13 mm
Weight 309 g
Illustrations XIV, 113 p. 54 illus., 30 illus. in color.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Physics, astronomy > Electricity, magnetism, optics

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