Pseudogap and Precursor Superconductivity Study of Zn doped YBCO

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In this thesis, the pseudogap and the precursor superconducting state, which are of great importance in clarifying the superconductivity mechanism in high-temperature cuprate superconductors, are investigated with a c-axis optical study in YBa2(Cu1-xZnx)3Oy. Testing was performed over a wide energy range with smaller temperature intervals for several Zn-substituted samples, as well as for several carrier-doping levels.

A spectral weight (SW) analysis, in which the pseudogap behavior can be separated from the superconducting condensate with the SW transfer to the high-energy region, revealed that the pseudogap is not the precursor of the superconductivity (carriers moving to the high-energy region with pseudogap opening never contribute to the superconducting condensation). Moreover, the high-energy transfer continues even below T c for the Zn-substituted samples (in which we weaken the superconductivity), which gives evidence to the coexistence of the pseudogap and the superconducting gap below T c.

On the other hand, the analysis of optical conductivity revealed that a precursor state to superconductivity can be defined at temperatures much higher than T c. The superconducting carrier density (n s) was calculated for each temperature (above and below T c) and the results confirmed the existence of n s at temperatures above T c. The observed real superconducting condensate (n s) above T c puts a serious constraint on the theory for high- T c superconductivity. A theory based on an inhomogeneous superconducting state, in which a microscopically phase-separated state in a doped Mott insulator can be observed, is the most plausible candidate. This theory can explain the existence of n s and the observedtemperature range for the precursor superconducting state.

The results obtained show that the pseudogap coexists with superconductivity below T c and is not the precursor of superconductivity. On the other hand, it is also possible to define a precursor superconducting state that is different than the pseudogap. The temperature range and the observed superconducting condensate in this state can be explained with the help of the inhomogeneous superconducting state.


Discusses the coexistence of the pseudogap and the superconducting gap in the superconducting state. Presents the temperature and doping dependencies of the precursor superconducting state Investigates the validity of the proposed theories based on the experimental results. Nominated as an outstanding contribution by Osaka University's Physics Department in 2013. Includes supplementary material: sn.pub/extras

Autorentext
Dr. Ece UYKUR
Experimental Physics II, Augsburg University, Universitätstrasse 1, D-86159 Augsburg, Germany.

Inhalt
Introduction.- High Temperature Cuprate Superconductors.- Experimental Procedure.- Results and Discussion.- Conclusion.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09784431555094
    • Auflage 2015
    • Sprache Englisch
    • Genre Maschinenbau
    • Lesemotiv Verstehen
    • Anzahl Seiten 108
    • Größe H241mm x B160mm x T12mm
    • Jahr 2015
    • EAN 9784431555094
    • Format Fester Einband
    • ISBN 4431555099
    • Veröffentlichung 23.03.2015
    • Titel Pseudogap and Precursor Superconductivity Study of Zn doped YBCO
    • Autor Ece Uykur
    • Untertitel Springer Theses
    • Gewicht 336g
    • Herausgeber Springer Japan

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