This book provides a modern introduction to the growth, characterization, and physics of iron-based superconducting thin films. Iron pnictide and iron chalcogenide compounds have become intensively studied key materials in condensed matter physics due to their potential for high temperature superconductivity. With maximum critical temperatures of around 60 K, the new superconductors rank first after the celebrated cuprates, and the latest announcements on ultrathin films promise even more. Thin film synthesis of these superconductors began in 2008 immediately after their discovery, and this growing research area has seen remarkable progress up to the present day, especially with regard to the iron chalcogenides FeSe and FeSe1-xTex, the iron pnictide BaFe2-xCoxAs2 and iron-oxyarsenides. This essential volume provides comprehensive, state-of-the-art coverage of iron-based superconducting thin films in topical chapters with detailed information on thin film synthesis and growth, analytical film characterization, interfaces, and various aspects on physics and materials properties. Current efforts towards technological applications and functional films are outlined and discussed. The development and latest results for monolayer FeSe films are also presented. This book serves as a key reference for students, lecturers, industry engineers, and academic researchers who would like to gain an overview of this complex and growing research area.
Based on never previously explored personal accounts and archival documentation, this book examines life and death in the Theresienstadt ghetto, seen through the eyes of the Jewish victims from Denmark. "How was it in Theresienstadt?" Thus asked Johan Grün rhetorically when he, in July 1945, published a short text about his experiences. The successful flight of the majority of Danish Jewry in October 1943 is a well-known episode of the Holocaust, but the experience of the 470 men, women, and children that were deported to the ghetto has seldom been the object of scholarly interest. Providing an overview of the Judenaktion in Denmark and the subsequent deportations, the book sheds light on the fate of those who were arrested. Through a micro-historical analysis of everyday life, it describes various aspects of social and daily life in proximity to death. In doing so, the volume illuminates the diversity of individual situations and conveys the deportees’ perceptions and striving for survival and ‘normality’. Offering a multi-perspective and international approach that places the case of Denmark into the broader Jewish experience during the Holocaust, this book is invaluable for researchers of Jewish studies, Holocaust and genocide studies, and the history of modern Denmark.
This book provides a modern introduction to the growth, characterization, and physics of iron-based superconducting thin films. Iron pnictide and iron chalcogenide compounds have become intensively studied key materials in condensed matter physics due to their potential for high temperature superconductivity. With maximum critical temperatures of around 60 K, the new superconductors rank first after the celebrated cuprates, and the latest announcements on ultrathin films promise even more. Thin film synthesis of these superconductors began in 2008 immediately after their discovery, and this growing research area has seen remarkable progress up to the present day, especially with regard to the iron chalcogenides FeSe and FeSe1-xTex, the iron pnictide BaFe2-xCoxAs2 and iron-oxyarsenides. This essential volume provides comprehensive, state-of-the-art coverage of iron-based superconducting thin films in topical chapters with detailed information on thin film synthesis and growth, analytical film characterization, interfaces, and various aspects on physics and materials properties. Current efforts towards technological applications and functional films are outlined and discussed. The development and latest results for monolayer FeSe films are also presented. This book serves as a key reference for students, lecturers, industry engineers, and academic researchers who would like to gain an overview of this complex and growing research area.
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