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1 Shevchenko, Andriy Magnetic Solitons in Extended Ferromagnetic Nanosystems Based on Iron and Nickel: Quantum, Thermodynamic, and Structural Effects I12879 2023 eBook  
2 ??nl??, Hilmi Progress in Nanoscale and Low-Dimensional Materials and Devices I12275 2022 Book  
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TitleMagnetic Solitons in Extended Ferromagnetic Nanosystems Based on Iron and Nickel: Quantum, Thermodynamic, and Structural Effects
Author(s)Shevchenko, Andriy;Barabash, Maksym;Minitskyi, Anatolii;Kushko, Andrii
PublicationCham, 1. Imprint: Springer 2. Springer Nature Switzerland, 2023.
DescriptionVIII, 72 p. 40 illus., 31 illus. in color : online resource
Abstract NoteThis book is based on a course of lectures aimed at undergraduate and graduate students studying materials science and welding at the E.O. Paton Institute of Materials Science and Welding National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute." The book is divided into four parts, each focusing on various aspects of magnetic solitons in ferromagnetic nanosystems. The first two parts of the book cover the quantum and thermodynamic properties of uniaxial ferromagnetic films with strong magnetic anisotropy and cylindrical nanowires made of different chemical compositions (ferrite-garnet, iron, nickel). These properties are related to the presence of "kink" solitons, which are vertical Bloch lines (BLs) and domain walls (DWs) of transverse type, respectively. The third part of the book discusses the effect of thermal motion of transverse-type DWs on the magnetocaloric effect in cylindrical iron and nickel nanowires. The fourth part of the book explores the conditions that lead to structural transitions between different types of DWs, including transverse, asymmetric, and DWs with a Bloch point (point soliton). Each part of the book is summarized at the end, highlighting the main results presented. Overall, the book is designed to provide students with a comprehensive understanding of magnetic solitons in ferromagnetic nanosystems and their associated quantum, thermodynamic, and structural properties
ISBN,Price9783031404306
Keyword(s)1. EBOOK - SPRINGER 2. MAGNETIC MATERIALS 3. Nanophysics 4. NANOSCIENCE 5. NANOTECHNOLOGY 6. Nanowires 7. Surfaces (Technology) 8. Surfaces, Interfaces and Thin Film 9. THIN FILMS
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TitleProgress in Nanoscale and Low-Dimensional Materials and Devices : Properties, Synthesis, Characterization, Modelling and Applications
Author(s)??nl??, Hilmi;Horing, Norman J. M
PublicationCham, 1. Imprint: Springer 2. Springer International Publishing, 2022.
DescriptionXVIII, 938 p. 419 illus., 339 illus. in color : online resource
Abstract NoteThis book describes most recent progress in the properties, synthesis, characterization, modelling, and applications of nanomaterials and nanodevices. It begins with the review of the modelling of the structural, electronic and optical properties of low dimensional and nanoscale semiconductors, methodology of synthesis, and characterization of quantum dots and nanowires, with special attention towards Dirac materials, whose electrical conduction and sensing properties far exceed those of silicon-based materials, making them strong competitors. The contributed reviews presented in this book touch on broader issues associated with the environment, as well as energy production and storage, while highlighting important achievements in materials pertinent to the fields of biology and medicine, exhibiting an outstanding confluence of basic physical science with vital human endeavor. The subjects treated in this book are attractive to the broader readership of graduate and advanced undergraduate students in physics, chemistry, biology, and medicine, as well as in electrical, chemical, biological, and mechanical engineering. Seasoned researchers and experts from the semiconductor/device industry also greatly benefit from the book???s treatment of cutting-edge application studies
ISBN,Price9783030934606
Keyword(s)1. CONDENSED MATTER 2. DETECTORS 3. EBOOK 4. EBOOK - SPRINGER 5. MAGNETISM 6. MATERIALS 7. Nanoelectromechanical systems 8. Nanoscale Devices 9. Nanowires 10. Quantum dots 11. Sensors and biosensors 12. Two-dimensional Materials
Item TypeBook
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I12275     On Shelf    

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