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  • 1
    Book
    Book
    Hoboken, NJ :Wiley-Interscience,
    UID:
    almafu_BV014861081
    Format: XII, 388 S. : Ill., graph. Darst.
    ISBN: 0-471-07935-9
    Series Statement: A John Wiley & Sons, Inc., publication
    Language: English
    Subjects: Engineering , Chemistry/Pharmacy , Physics
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    Keywords: Nanotechnologie ; Nanostrukturiertes Material
    Author information: Poole, Charles P. 1927-2015
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    Book
    Book
    Hoboken, NJ :Wiley-Interscience,
    UID:
    almahu_BV023027537
    Format: XVI, 539 S. : , Ill., graph. Darst.
    ISBN: 978-0-470-06740-6
    Language: English
    Subjects: Engineering , Chemistry/Pharmacy , Physics
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    Keywords: Nanotechnologie ; Festkörper ; Nanostrukturiertes Material ; Festkörper
    Library Location Call Number Volume/Issue/Year Availability
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  • 3
    Book
    Book
    New York :Acad. Press,
    UID:
    almafu_BV002246542
    Format: X, 389 S.: graph. Darst., Tab.
    ISBN: 0-12-531450-7
    Language: English
    Subjects: Physics
    RVK:
    Keywords: Phasenumwandlung ; Magnetische Resonanz
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  • 4
    Book
    Book
    New York [u.a.] : Plenum Press
    UID:
    b3kat_BV011558755
    Format: XII, 203 S. , Ill., graph. Darst.
    ISBN: 030645453X
    Series Statement: Selected topics in superconductivity
    Additional Edition: Erscheint auch als Online-Ausgabe ISBN 978-0-306-47069-1
    Language: English
    Subjects: Physics
    RVK:
    Keywords: Supraleitung ; Hochtemperatursupraleiter
    Author information: Poole, Charles P. 1927-2015
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  • 5
    Online Resource
    Online Resource
    Hoboken, New Jersey :Wiley,
    UID:
    almafu_9959328716202883
    Format: 1 online resource
    ISBN: 9781118989906 , 1118989902 , 9781118989920 , 1118989929 , 9781118989913 , 1118989910 , 1118639960 , 9781118639962
    Content: A comprehensive coverage of the physical properties and real-world applications of magnetic nanostructures This book discusses how the important properties of materials such as the cohesive energy, and the electronic and vibrational structures are affected when materials have at least one length in the nanometer range. The author uses relatively simple models of the solid state to explain why these changes in the size and dimension in the nanometer regime occur. The text also reviews the physics of magnetism and experimental methods of measuring magnetic properties necessary to understanding how nanosizing affects magnetism. Various kinds of magnetic structures are presented by the author in order to explain how nanosizing influences their magnetic properties. The book also presents potential and actual applications of nanomaterials in the fields of medicine and computer data storage. Physics of Magnetic Nanostructures: -Covers the magnetism in carbon and born nitride nanostructures, bulk nanostructured magnetic materials, nanostructured magnetic semiconductors, and the fabrication of magnetic nanostructures -Discusses emerging applications of nanomaterials such as targeted delivery of drugs, enhancement of images in MRI, ferrofluids, and magnetic computer data storage -Includes end-of-chapter exercises and five appendices Physics of Magnetic Nanostructures is written for senior undergraduate and graduate students in physics and nanotechnology, material scientists, chemists, and physicists.
    Note: TITLE PAGE; TABLE OF CONTENTS; PREFACE; ACKNOWLEDGMENT; 1 PROPERTIES OF NANOSTRUCTURES; 1.1 COHESIVE ENERGY; 1.2 ELECTRONIC PROPERTIES; 1.3 QUANTUM DOTS; 1.4 VIBRATIONAL PROPERTIES; 1.5 SUMMARY; EXERCISES; REFERENCES; 2 THE PHYSICS OF MAGNETISM; 2.1 KINDS OF MAGNETISM; 2.2 PARAMAGNETISM; 2.3 FERROMAGNETISM; 2.4 ANTIFERROMAGNETISM; EXERCISES; REFERENCES; 3 PROPERTIES OF MAGNETIC NANOPARTICLES; 3.1 SUPERPARAMAGNETISM; 3.2 EFFECT OF PARTICLE SIZE ON MAGNETIZATION; 3.3 DYNAMICAL BEHAVIOR OF MAGNETIC NANOPARTICLES; 3.4 MAGNETIC FIELD-ALIGNED PARTICLES IN FROZEN FLUIDS. , 3.5 MAGNETISM INDUCED BY NANOSIZING3.6 ANTIFERROMAGNETIC NANOPARTICLES; 3.7 MAGNETORESISTIVE MATERIALS; EXERCISES; REFERENCES; 4 BULK NANOSTRUCTURED MAGNETIC MATERIALS; 4.1 FERROMAGNETIC SOLIDS WITH NANOSIZED GRAINS; 4.2 LOW-DIMENSIONAL MAGNETIC NANOSTRUCTURES; 4.3 MAGNETORESISTANCE IN BULK NANOSTRUCTURED MATERIALS; EXERCISES; REFERENCES; 5 MAGNETISM IN CARBON AND BORON NITRIDE NANOSTRUCTURES; 5.1 CARBON NANOSTRUCTURES; 5.2 EXPERIMENTAL OBSERVATIONS OF MAGNETISM IN CARBON AND BORON NITRIDE NANOSTRUCTURES; EXERCISES; REFERENCES; 6 NANOSTRUCTURED MAGNETIC SEMICONDUCTORS. , 6.1 ELECTRON-HOLE JUNCTIONS6.2 MOSFET; 6.3 NANOSIZED MOSFETs; 6.4 DILUTE MAGNETIC SEMICONDUCTORS; 6.5 NANOSTRUCTURING IN MAGNETIC SEMICONDUCTORS; 6.6 DMS QUANTUM WELLS; 6.7 DMS QUANTUM DOTS; 6.8 STORAGE DEVICES BASED ON MAGNETIC SEMICONDUCTORS; 6.9 THEORETICAL PREDICTIONS OF NANOSTRUCTURED MAGNETIC SEMICONDUCTORS; EXERCISES; REFERENCES; 7 APPLICATIONS OF MAGNETIC NANOSTRUCTURES; 7.1 FERROFLUIDS; 7.2 MAGNETIC STORAGE (HARD DRIVES); 7.3 ELECTRIC FIELD CONTROL OF MAGNETISM; 7.4 MAGNETIC PHOTONIC CRYSTALS; 7.5 MAGNETIC NANOPARTICLES AS CATALYSTS. , 7.6 MAGNETIC NANOPARTICLE LABELING OF HAZARDOUS MATERIALSEXERCISES; REFERENCES; 8 MEDICAL APPLICATIONS OF MAGNETIC NANOSTRUCTURES; 8.1 TARGETED DRUG DELIVERY; 8.2 MAGNETIC HYPERTHERMIA; 8.3 MAGNETIC SEPARATION; 8.4 MAGNETIC NANOPARTICLES FOR ENHANCED CONTRAST IN MAGNETIC RESONANCE IMAGING; 8.5 DETECTION OF BACTERIA; 8.6 ANALYSIS OF STORED BLOOD; EXERCISES; REFERENCES; 9 FABRICATION OF MAGNETIC NANOSTRUCTURES; 9.1 MAGNETIC NANOPARTICLES; 9.2 MAGNETIC QUANTUM WELLS; 9.3 MAGNETIC NANOWIRES; 9.4 MAGNETIC QUANTUM DOTS; EXERCISES; REFERENCES. , APPENDIX A A TABLE OF NUMBER OF ATOMS VERSUS SIZE IN FACE CENTERED CUBIC NANOPARTICLESAPPENDIX B DEFINITION OF A MAGNETIC FIELD; APPENDIX C DENSITY FUNCTIONAL THEORY; APPENDIX D TIGHT BINDING MODEL OF ELECTRONIC STRUCTURE OF METALS; APPENDIX E PERIODIC BOUNDARY CONDITIONS; INDEX; End User License Agreement.
    Additional Edition: Print version: Owens, Frank J. Physics of magnetic nanostructures. Hoboken, New Jersey : John Wiley & Sons, Inc., [2015] ISBN 9781118639962
    Language: English
    Keywords: Electronic books. ; Electronic books. ; Electronic books.
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  • 6
    UID:
    b3kat_BV042410788
    Format: 1 Online-Ressource (XII, 199 p)
    ISBN: 9780306470820 , 9780306459481
    Series Statement: Selected Topics in Superconductivity
    Note: In 1987 a major breakthrough occurred in materials science. A new family of materials was discovered that became superconducting above the temperature at which nitrogen gas liquifies, namely, 77 K or –196°C. Within months of the discovery, a wide variety of experimental techniques were brought to bear in order to measure the properties of these materials and to gain an understanding of why they superconduct at such high temperatures. Among the techniques used were electromagnetic absorption in both the normal and the superconducting states. The measurements enabled the determination of a wide variety of properties, and in some instances led to the observation of new effects not seen by other measurements, such as the existence of weak-link microwave absorption at low dc magnetic fields. The number of different properties and the degree of detail that can be obtained from magnetic field- and temperature-dependent studies of electromagnetic absorption are not widely appreciated. For example, these measurements can provide information on the band gap, critical fields, the H–T irreversibility line, the amount of trapped flux, and even information about the symmetry of the wave function of the Cooper pairs. It is possible to use low dc magnetic field-induced absorption of microwaves with derivative detection to verify the presence of superconductivity in a matter of minutes, and the measurements are often more straightforward than others. For example, they do not require the physical contact with the sample that is necessary when using four-probe resistivity to detect superconductivity
    Language: English
    Author information: Poole, Charles P. 1927-2015
    Library Location Call Number Volume/Issue/Year Availability
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  • 7
    Book
    Book
    Hoboken :Wiley,
    UID:
    almahu_BV042725261
    Format: X, 172 S. : , Ill., graph. Darst.
    ISBN: 978-1-118-63996-2
    Language: English
    Subjects: Engineering , Chemistry/Pharmacy , Physics
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    Keywords: Magnetismus ; Nanostruktur ; Magnetismus ; Nanostrukturiertes Material
    Library Location Call Number Volume/Issue/Year Availability
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  • 8
    Online Resource
    Online Resource
    Boston, MA : Springer US
    UID:
    b3kat_BV042410781
    Format: 1 Online-Ressource (XII, 204 Seiten)
    ISBN: 9780306470691 , 9780306454530
    Series Statement: Selected Topics in Superconductivity
    Note: In The New Superconductors, Frank J. Owens and Charles P. Poole, Jr., offer a descriptive, non-mathematical presentation of the latest superconductors and their properties for the non-specialist. Highlights of this up-to-date text include chapters on superfluidity, the latest copper oxide types, fullerenes, and prospects for future research. The book also features many examples of commercial applications; an extensive glossary that defines superconductivity terms in clear language; and a supplementary list of readings for the interested lay reader
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 0-306-45453-X
    Language: English
    Subjects: Physics
    RVK:
    Keywords: Hochtemperatursupraleiter ; Supraleitung
    Author information: Poole, Charles P. 1927-2015
    Library Location Call Number Volume/Issue/Year Availability
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  • 9
    Online Resource
    Online Resource
    New York, NY :Springer US :
    UID:
    almahu_9949199297702882
    Format: XII, 204 p. , online resource.
    Edition: 1st ed. 2002.
    ISBN: 9780306470691
    Series Statement: Selected Topics in Superconductivity
    Content: In The New Superconductors, Frank J. Owens and Charles P. Poole, Jr., offer a descriptive, non-mathematical presentation of the latest superconductors and their properties for the non-specialist. Highlights of this up-to-date text include chapters on superfluidity, the latest copper oxide types, fullerenes, and prospects for future research. The book also features many examples of commercial applications; an extensive glossary that defines superconductivity terms in clear language; and a supplementary list of readings for the interested lay reader.
    Note: Discovery of High-Temperature Superconductivity -- Conductivity and Magnetism -- Superconducting State -- Superfluidity -- Explanations of Superconductivity -- Classical Superconductors -- Fullerenes -- New High-Temperature Superconductors -- Magnets and Their Uses -- Wires and Films -- Further Applications -- Future Prospects.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9781475785661
    Additional Edition: Printed edition: ISBN 9780306454530
    Additional Edition: Printed edition: ISBN 9781475785654
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 10
    UID:
    almahu_9949199297102882
    Format: XII, 199 p. , online resource.
    Edition: 1st ed. 2002.
    ISBN: 9780306470820
    Series Statement: Selected Topics in Superconductivity
    Content: In 1987 a major breakthrough occurred in materials science. A new family of materials was discovered that became superconducting above the temperature at which nitrogen gas liquifies, namely, 77 K or -196°C. Within months of the discovery, a wide variety of experimental techniques were brought to bear in order to measure the properties of these materials and to gain an understanding of why they superconduct at such high temperatures. Among the techniques used were electromagnetic absorption in both the normal and the superconducting states. The measurements enabled the determination of a wide variety of properties, and in some instances led to the observation of new effects not seen by other measu- ments, such as the existence of weak-link microwave absorption at low dc magnetic fields. The number of different properties and the degree of detail that can be obtained from magnetic field- and temperature-dependent studies of electromagnetic abso- tion are not widely appreciated. For example, these measurements can provide information on the band gap, critical fields, the H-T irreversibility line, the amount of trapped flux, and even information about the symmetry of the wave function of the Cooper pairs. It is possible to use low dc magnetic field-induced absorption of microwaves with derivative detection to verify the presence of superconductivity in a matter of minutes, and the measurements are often more straightforward than others. For example, they do not require the physical contact with the sample that is necessary when using four-probe resistivity to detect superconductivity.
    Note: The Superconducting State -- The New Superconductors -- Experimental Methods and Complementary Techniques -- Electromagnetic Absorption in the Normal State -- Zero Magnetic Field Microwave Absorption -- Low Magnetic Field-Induced Microwave Absorption -- Electromagnetic Absorption Due to Vortex Motion -- Infrared and Optical Absorption -- Applications.
    In: Springer Nature eBook
    Additional Edition: Printed edition: ISBN 9781475787603
    Additional Edition: Printed edition: ISBN 9780306459481
    Additional Edition: Printed edition: ISBN 9781475787597
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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