Fermi Surface and Quantum Critical Phenomena of High-Temperature Superconductors
Carsten Matthias Putzke
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Description for Fermi Surface and Quantum Critical Phenomena of High-Temperature Superconductors
Hardback. Series: Springer Theses. Num Pages: 162 pages, 81 black & white illustrations, 23 colour illustrations, biography. BIC Classification: PHQ; TJFD5. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 11. Weight in Grams: 438.
This thesis provides a detailed introduction to quantum oscillation measurement and analysis and offers a connection between Fermi surface properties and superconductivity in high-temperature superconductors. It also discusses the field of iron-based superconductors and tests the models for the appearance of nodes in the superconducting gap of a 111-type pnictide using quantum oscillation measurements combined with band structure calculation.
The same measurements were carried out to determine the quasiparticle mass in BaFe2(As1-xPx)2, which is strongly enhanced at the expected quantum critical point. While the lower superconducting critical field shows evidence of quantum criticality, the upper superconducting critical field is not ... Read more
This thesis provides a detailed introduction to quantum oscillation measurement and analysis and offers a connection between Fermi surface properties and superconductivity in high-temperature superconductors. It also discusses the field of iron-based superconductors and tests the models for the appearance of nodes in the superconducting gap of a 111-type pnictide using quantum oscillation measurements combined with band structure calculation.
The same measurements were carried out to determine the quasiparticle mass in BaFe2(As1-xPx)2, which is strongly enhanced at the expected quantum critical point. While the lower superconducting critical field shows evidence of quantum criticality, the upper superconducting critical field is not ... Read more
Product Details
Format
Hardback
Publication date
2017
Publisher
Springer International Publishing AG Switzerland
Number of pages
162
Condition
New
Series
Springer Theses
Number of Pages
162
Place of Publication
Cham, Switzerland
ISBN
9783319486451
SKU
V9783319486451
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
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