Handbook on the Physics and Chemistry of Rare Earths: High Temperature Rare Earths Superconductors - I
Gschneidner, K.A.; Eyring, L.; Maple, M.B.
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Table of contents
- Cover
- Contentsix
- Prefacev
- Contents of Volume 31 (preliminary)x
- Contents of Volume 1-29xi
- Chapter 187. High-Temperature Superconductivity in Layered Cuprates: Overview1
- Chapter 188. Crystal Chemistry of Superconducting Rare-Earth Cuprates31
- Chapter 189. Single-Crystal Growth for Science and Technology67
- Chapter 190. Phase Diagrams and Thermodynamic Properties229
- Chapter 191. Electron Paramagnetic Resonance in Cuprate Superconductors and in Parent Compounds375
- Chapter 192. Positron Annihilation in High-Temperature Superconductors417
- Chapter 193. RBa2Cu3O7 Compounds: Electronic Theory and Physical Properties453
- Chapter 194. Electronic 4f State Splittings in Cuprates491
- Author Index547
- Subject Index621
Book details
- Vendor Elsevier S & T
- SKU 9780444505286
- ISBN-13 9780080544373
- Author Gschneidner, K.A.; Eyring, L.; Maple, M.B.
- Category Science
- Subject Physical & Theoretical
Do you have questions about this book?
This volume of the Handbook is the first of a two-volume set of reviews devoted to the rare-earth-based high-temperature oxide superconductors (commonly known as hiTC superconductors). The history of hiTC superconductors is a few months short of being 14 years old when Bednorz and Müller published their results which showed that (La,BA)2 CuO4 had a superconducting transition of ~30 K, which was about 7K higher than any other known superconducting material. Within a year the upper temperature limit was raised to nearly 100K with the discovery of an ~90K superconducting transition in YBa2 Cu3 O7 - &dgr; . The announcement of a superconductor with a transition temperature higher than the boiling point of liquid nitrogen set-off a frenzy of research on trying to find other oxide hiTC superconductors. Within a few months the maximum superconducting transition reached 110 K (Bi2 Sr2 Ca2 Cu3 010 , and then 122K (TlBa2 Ca3 Cu4 O11 . It took several years to push TC up another 11 K to 133 K with the discovery of superconductivity in HgBa2 Ca2 Cu3 O8 , which is still the record holder today.
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