Critical Currents in Superconducting Thin Films and Multilayers

Critical Currents in Superconducting Thin Films and Multilayers PDF Author: Ernest V. Kadyrov
Publisher:
ISBN:
Category :
Languages : en
Pages : 526

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Critical Currents in Superconducting Thin Films and Multilayers

Critical Currents in Superconducting Thin Films and Multilayers PDF Author: Ernest V. Kadyrov
Publisher:
ISBN:
Category :
Languages : en
Pages : 526

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The Dependence of Critical Currents on Superconducting Thin Films

The Dependence of Critical Currents on Superconducting Thin Films PDF Author: Roger Martin Wartell
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Thin Film Multilayer Superconductors and the Proximity Effect

Thin Film Multilayer Superconductors and the Proximity Effect PDF Author: Kevin M. McLaughlin
Publisher:
ISBN:
Category : Thin films, Multilayered
Languages : en
Pages : 112

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Book Description
Recent superconducting thin films studies have attempted to create pure metal layer films of Niobium and Titanium with the same properties of superconducting NbTi wire used in industry. These studies have all reported depression of the superconducting properties of the pure metal films which has been attributed to the proximity effect. The purpose of this research project was to construct several NbTi films composed of alloyed layers to overcome the proximity depression of superconducting properties. These films are unique in that they are the only films with both alloyed Nb/Ti superconducting and normal layers reported in the literature. Films with several different compositions and bilayer geometries were designed, constructed and their superconducting properties characterized. The films were created by the RF sputtering of alloyed targets at ambient temperatures. Characterization of the composition of the films was performed by microprobe analysis at two different electron beam voltages. A simulation of the electron beam excitation volume of the microprobe was performed to determine the difference in the two analyses and to determine whether the substrate would be found upon microprobe examination. X-ray diffraction was utilized to determine the bilayer spacing and to give a qualitative understanding of the alignment of the film microstructures. The critical temperature and upper critical magnetic field were measured to determine the superconducting properties and the extent of the proximity effect in the films. The microprobe analysis found most films to be very pure alloys except for films 6001, 6002, 6003(1) in which there were between 1-8 wt% of impurities. All films contained compositional variations on the order of 10 wt% from the design values. X-ray diffraction indicated agreement with the designed bilayer spacing in all films but 6003(2), 6005(1), and 6005(2) which had bilayer periods larger than originally designed. The proximity effect was not observed in any of the film's superconducting properties examined. T[subscript]c and H[subscript]c2 properties for the films without impurities had properties equal to that of bulk Nb/47wt% Ti. Films 6001, 6003(1) had depressed T[subscript]c and H[subscript]c2 values which were attributed to their impurity contamination. The low Ti composition in many of the films points to the inaccuracy of the deposition parameters when the films were first processed. The lack of T[subscript]c and H[subscript]c2 depression normally seen in other film studies with bilayer periods between 10-30 nm demonstrates that alloyed layers should be used to overcome the proximity effect in multilayer thin film superconductor studies. Overcoming the proximity effect should translate into a better understanding of flux pinning mechanisms in the material and increased superconducting critical currents in these films.

Iron-Based Superconducting Thin Films

Iron-Based Superconducting Thin Films PDF Author: Silvia Haindl
Publisher: Springer Nature
ISBN: 3030751325
Category : Technology & Engineering
Languages : en
Pages : 403

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Book Description
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.

Critical Currents in High-Tc “[T Tief C]” Superconducting Thin Films

Critical Currents in High-Tc “[T Tief C]” Superconducting Thin Films PDF Author: Gity Samadi Hosseinali
Publisher:
ISBN:
Category :
Languages : en
Pages : 246

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Critical Currents in NbZr Superconducting Thin Films

Critical Currents in NbZr Superconducting Thin Films PDF Author: S. Barbanera
Publisher:
ISBN:
Category :
Languages : en
Pages : 13

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Critical Currents In Superconductors For Practical Applications - Proceedings Of The International Workshop

Critical Currents In Superconductors For Practical Applications - Proceedings Of The International Workshop PDF Author: Lian Zhou
Publisher: World Scientific
ISBN: 9814545449
Category :
Languages : en
Pages : 466

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Book Description
This proceedings volume reviews the recent developments of superconducting materials for practical applications and critical current characteristics. It contains 18 invited papers and 72 contributed papers. The scope of these papers includes: (1) synthesis and processing of practical materials, (2) properties of high-Tc tapes, coils and bulk materials, (3) critical currents and microstructure, (4) flux dynamics and pinning mechanisms, (5) applications of high-Tc materials, (6) applications of low-Tc superconductors, (7) processing, physical properties and applications of high-Tc thin films.

Critical Currents In Superconductors - Proceedings Of The 7th International Workshop

Critical Currents In Superconductors - Proceedings Of The 7th International Workshop PDF Author: H W Weber
Publisher: World Scientific
ISBN: 981455068X
Category :
Languages : en
Pages : 716

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Book Description
Applications of superconductivity at the boiling temperature of liquid nitrogen continue to challenge physicists, materials scientists and engineers all over the world eight years after the discovery of high temperature superconductivity. The key to a solution of today's problems lies in the optimization of the defect structure in well-oriented oxide materials as well as in a fundamental understanding of the magnetic microstructures in the mixed state and how they are affected by the crystallographic nature ('dimensionality') of these materials. Fifteen invited overview lectures as well as approximately 150 contributed papers highlight the state of the art in this important field of superconductivity and review our current knowledge of critical currents in superconductors.

Science and Technology of Thin Film Superconductors

Science and Technology of Thin Film Superconductors PDF Author: R.D. McConnell
Publisher: Springer
ISBN:
Category : Science
Languages : en
Pages : 584

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Book Description
The Conference on the Science and Technology of Thin Film Superconductors was conceived in the early part of 1988 as a forum for the specialist in thin film superconductivity. The conference was held on November 14-18, 1988, in Co lorado Springs, Co lorado. Al though many excellent superconductivity conferences had been convened in the wake of the 1986-1987 discoveries in high temperature superconductivity, thin film topics were often dispersed among the sessions of a more general conference agenda. The response to the Conference on the Science and Technology of Thin Film Superconductors confirmed the need for an extended conference devoted to thin film superconductors. These proceedings are a major contribution to the technnology of thin film superconductivity because of the breadth and quality of the articles provided by leaders in the field. The proceedings are divided into articles on laser deposition, sputtering, evaporation, metal organic chemical vapor deposition, thick film, substrate studies, characterization, patterning and applications, and general properties. Most of the articles discuss scientific issues for high temperature thin film superconductors, although the conference was to be a forum for technology and scientific questions for both low and high temperature superconductivity. For the first day of the 5 day conference, Lawrence Berkeley Laboratory had organized an excellent set of short courses in superconduc t ing thin film devices.

Critical Currents In Superconductors - Proceedings Of The 8th International Workshop

Critical Currents In Superconductors - Proceedings Of The 8th International Workshop PDF Author: Teruo Matsushita
Publisher: World Scientific
ISBN: 9814547166
Category :
Languages : en
Pages : 538

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Book Description
This workshop includes about 110 papers describing the flux pinning and related electromagnetic phenomena in superconductors. Various problems are argued on exotic properties of flux lines, flux dynamics, flux pinning mechanisms, critical current density and critical state phenomena in both high- and low-temperature superconductors.