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Enhanced Superconducting Properties of Iron Chalcogenide Thin Films

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Release : 2013
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Book Synopsis Enhanced Superconducting Properties of Iron Chalcogenide Thin Films by : Li Chen

Download or read book Enhanced Superconducting Properties of Iron Chalcogenide Thin Films written by Li Chen. This book was released on 2013. Available in PDF, EPUB and Kindle. Book excerpt: Among the newly discovered iron-based superconductor, FeSe with the simplest structure and a transition temperature (T_c) around 8 K arouses much research interest. Although its Tc is much lower than that of the cuprates, iron chalcogenide has low anisotropy, slow decrease of the critical current density (J_c) with increasing magnetic field and high upper critical field H_c2 as well as easy composition control, which makes it a promising candidate to substitute NbSn/NbTi for high field applications. Compared with its bulk counterpart, iron-based superconductor thin film has a great potential in developing the ordered quasi-2D structure and is suitable for coating technology which has already been applied in YBa_2Cu_3O_7-x coated conductors. In this thesis, we first optimized pure FeSe thin films by different growth conditions using pulsed laser deposition (PLD) and post-annealing procedures. The microstructure properties of the films including the epitaxial quality, interface structure and secondary phase have been studied and correlated with the superconducting properties. Second, we reported our initial attempt on introducing the flux pinning centers into FeSe_0.5Te_0.5 thin films either under a controlled oxygen atmosphere or with a thin CeO_2 interlayer. The microstructure of the FeSe_0.5Te_0.5 films including the epitaxial quality, the interface structure and the secondary phase have been studied and correlated with the in-field performance of the superconducting thin films to explore the pinning properties of these nanoscale defects. Very recently, ion beam assisted deposition (IBAD) substrates have been used to grow high quality FeSe_0.5Te_0.5 tape with excellent in-field performance. The film on IBAD substrate involves multiple steps of seed layer and buffer layer deposition to establish the epitaxial growth template. Therefore a simplified and cost effective iron-based coated conductor is more desirable. Towards the practical application, we demonstrated the growth of superconducting FeSe_0.5Te_0.5 film on amorphous glass substrates for the first time. The film is highly textured with excellent superconducting properties, e.g., T_c of 10 K and J_c under self-field as high as 1.2 x 10^4 A/cm^2 at 4 K. Further optimization of the film growth with various nanoscale interlayers has been carried out. In addition the Te rich iron chalcogenide thin film with composition close to the composition with antiferromagnetic (AFM) transition has been demonstrated. Compared to the FeSe_0.5Te_0.5 which claimed to be the optimum composition from the literature report, the FeSe_0.1Te_0.9 is even more promising for the high field application with its coexistence of super high upper critical field and high critical current density. The electronic version of this dissertation is accessible from http://hdl.handle.net/1969.1/151063

Iron-Based Superconducting Thin Films

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Release : 2021-06-27
Genre : Technology & Engineering
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Book Rating : 325/5 ( reviews)

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Book Synopsis Iron-Based Superconducting Thin Films by : Silvia Haindl

Download or read book Iron-Based Superconducting Thin Films written by Silvia Haindl. This book was released on 2021-06-27. Available in PDF, EPUB and Kindle. Book excerpt: 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.

Substrate Effect for Correlated Chalcogenide Thin Films

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Release : 2020
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Book Synopsis Substrate Effect for Correlated Chalcogenide Thin Films by : Tao Jia

Download or read book Substrate Effect for Correlated Chalcogenide Thin Films written by Tao Jia. This book was released on 2020. Available in PDF, EPUB and Kindle. Book excerpt: The intersection between correlated electron systems and thin films provides exciting research opportunities. Quantum confinement effects, interfacial interactions and other substrate effects can be engineered to acquire desired physical properties in heterostructures. A brief introduction of the correlated electron problem and thin film research is presented in Chapter 1. To create and characterize complex thin films, precise tools for film growth and electron property measurement are needed. We provide an experimentalist's introduction of two major experimental tools in this dissertation: Angle-resolved Photoemission Spectroscopy (ARPES) for electronic property measurement (Chapter 2) and Molecular Beam Epitaxy (MBE) for thin film growth (Chapter 3). Monolayer (1ML) FeSe films on SrTiO$_3$ (STO) substrates demonstrate a large increase in electron doping and superconducting transition temperature. This is an example of how thin films and interfaces provide new opportunities in correlated electron systems. We use our MBE-ARPES chamber to grow and study FeSe films on various substrates in order to elucidate the reason behind this superconductivity enhancement. In Chapter 4, we describe the fabrication and study of 1ML FeSe/TiO$_2$ (rutile). By comparing 1ML FeSe/TiO$_2$ to 1ML FeSe/STO and other superconductors in iron chalcogenide family, we argue that doping and interfacial electron-phonon interaction are the two key factors to the enhanced superconductivity. In Chapter 5, we further study the origin of the doping effects in 1ML FeSe/titanate thin films using a versatile platform: 1ML FeSe/LaTiO$_3$ (LTO) /STO. To our surprise, although the charge density of two-dimensional electron gases (2DEGs) on LTO/STO can be increased to a few times higher than FeSe carrier density, the doping of 1ML FeSe on top of LTO/STO heterostructure does not increase. This provides strong confinements to theories that aim to explain the doping of 1ML FeSe/titanates. Our research on 1ML FeSe with TiO$_2$ and LTO/STO as substrates helps researchers understand the origin of increased superconductivity in this material system and provides insights on how to apply similar mechanisms to other materials. We switch gears and discuss the substrate effects for TiSe$_2$/TiO$_2$ heterostructure in Chapter 6. TiSe$_2$, both as bulk single crystals and as thin films on graphene, is in an ordered charge density wave (CDW) state at low temperatures. We find that hexagonal TiSe$_2$ can be grown epitaxially on tetragonal TiO$_2$ substrates, and the resulting films show large electron doping and no CDW order. Our further experiments demonstrate that the doping and suppression of CDW order is due to Se vacancies, which are created by substrate induced change in the film growth condition. This indirect substrate effect of doping may be applied to other transition metal dichalcogenide (TMDC) films on transition metal oxide (TMO) substrates as a powerful way to tune the electrical and optical properties of such heterostructures. This dissertation is summarized in Chapter 7, where we also propose possible future investigations based on this work. With quantitative understanding and precise control of thin film growth in MBE and advanced \textit{in situ} ARPES for measurements, our strength in creating and understanding correlated electron systems will be further improved.

Superconducting Thin Films for the Enhancement of Superconducting Radio Frequency Accelerator Cavities

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Release : 2017
Genre : Thin films
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Book Synopsis Superconducting Thin Films for the Enhancement of Superconducting Radio Frequency Accelerator Cavities by : Matthew C. Burton

Download or read book Superconducting Thin Films for the Enhancement of Superconducting Radio Frequency Accelerator Cavities written by Matthew C. Burton. This book was released on 2017. Available in PDF, EPUB and Kindle. Book excerpt: Bulk niobium (Nb) superconducting radio frequency (SRF) cavities are currently the preferred method for acceleration of charged particles at accelerating facilities around the world. However, bulk Nb cavities have poor thermal conductance, impose material and design restrictions on other components of a particle accelerator, have low reproducibility and are approaching the fundamental material-dependent accelerating field limit of approximately 50MV/m. Since the SRF phenomena occurs at surfaces within a shallow depth of ~1 μm, a proposed solution to this problem has been to utilize thin film technology to deposit superconducting thin films on the interior of cavities to engineer the active SRF surface in order to achieve cavities with enhanced properties and performance. Two proposed thin film applications for SRF cavities are: 1) Nb thin films coated on bulk cavities made of suitable castable metals (such as copper or aluminum) and 2) multilayer films designed to increase the accelerating gradient and performance of SRF cavities. While Nb thin films on copper (Cu) cavities have been attempted in the past using DC magnetron sputtering (DCMS), such cavities have never performed at the bulk Nb level. However, new energetic condensation techniques for film deposition, such as High Power Impulse Magnetron Sputtering (HiPIMS), offer the opportunity to create suitably thick Nb films with improved density, microstructure and adhesion compared to traditional DCMS. Clearly use of such novel technique requires fundamental studies to assess surface evolution and growth modes during deposition and resulting microstructure and surface morphology and the correlation with RF superconducting properties. Here we present detailed structure-property correlative research studies done on Nb/Cu thin films and NbN- and NbTiN-based multilayers made using HiPIMS and DCMS, respectively.

HTSC Thin Films

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Release : 1994
Genre : Science
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Book Synopsis HTSC Thin Films by : A. V. Narlikar

Download or read book HTSC Thin Films written by A. V. Narlikar. This book was released on 1994. Available in PDF, EPUB and Kindle. Book excerpt: Studies Of High Temperature Superconductors Volume 13 -- Advances In Research & Applications

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