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Iron-Based Superconductivity

Peter D. Johnson (Hrsg.), Wei-Guo Yin (Hrsg.), Guangyong Xu (Hrsg.)

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Springer International Publishing img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Maschinenbau, Fertigungstechnik

Beschreibung

This volume presents an in-depth review of experimental and theoretical studies on the newly discovered Fe-based superconductors.  Following the Introduction, which places iron-based superconductors in the context of other unconventional superconductors, the book is divided into three sections covering sample growth, experimental characterization, and theoretical understanding.  To understand the complex structure-property relationships of these materials, results from a wide range of experimental techniques and theoretical approaches are described that probe the electronic and magnetic properties and offer insight into either itinerant or localized electronic states. The extensive reference lists provide a bridge to further reading.

Iron-Based Superconductivity is essential reading for advanced undergraduate and graduate students as well as researchers active in the fields of condensed matter physics and materials science in general, particularly those with an interest in correlated metals, frustrated spin systems, superconductivity, and competing orders.

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Schlagwörter

Fe-based Superconductors Optics and Transport, Theoretical Understanding, ARPES, Perfect Crystal, High-Tc, Orbital-selective Mott Transition, Characterization Iron-based Superconductors, Itinerant Electron Model Superconductivity, Unconventional Superconductors, Iron-based Superconductivity Book, Iron-based Superconductors Synthesis Film, Iron-based Superconductors, Fe-based Superconductors, Disorder Effect, Iron-based Superconductors Synthesis Bulk, Sample Growth, Pnictide, Experimental Characterization