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Material Research in Atomic Scale by Mössbauer Spectroscopy
  • Language: en
  • Pages: 369

Material Research in Atomic Scale by Mössbauer Spectroscopy

Mössbauer spectroscopy is uniquely able to probe hyperfine interactions by looking at the short-range order of resonant atoms. Materials containing an appropriate isotope as one of their constituent atoms, such as iron or tin, are readily investigated. But even materials that do not contain Mössbauer-active atoms can be investigated if the probe atoms are incorporated in minor quantities (ca. 0.1 at.-%) to act as molecular-level indicators. These 35 papers collected here represent a state-of-the-art description of Mössbauer spectroscopy techniques applied to advanced materials. The topics covered comprise investigations of nanomaterials, nanoparticles, and quasicrystals, artificially structured materials as well as applications of Mössbauer spectroscopy in chemistry, mineralogy and metallurgy. The main aim of is the dissemination of information on research and recent developments of the method in materials science as obtained in leading Mössbauer laboratories.

Frontiers in Magnetic Materials
  • Language: en
  • Pages: 832

Frontiers in Magnetic Materials

Spin Ladders and Spin Chains.- Probing Magnetic Phases in Different Systems.- Spin Glasses; From the Roots to the Present.- Magnetism in Nanostructures.- Surface and Interface Magnetism on the Atomic Scale.- Spectroscopy of Quantum Antiferromagnets.- Modern Methods for Investigating Magnetism.- Low Dimensionalmagnetism in Transition Metal Oxyborates.- Finite Temperature Half-metallic Ferromagnets.- Charge Order in Doped and Self-doped Oxides: Present Pictures.- Magnetic Tunnel Junctions Based on Half Metallic Oxides.- SrCu2 (BO3)2- a 2D Spin Gap Material.- Magnetism in Quantum Spin Systems.- Chemistry Aspects of Double Perovskites.- Magnetism in Carbon based Materials.- Microstructure Studies of Manganites by Lorentz-TEM Technique.- Local-Moment Systems: Ferromagnetism and Electronic Correlations.- Magnetism of Heavy Electron Materials.- Commenturate and Incommensurate Magnetism in Layered Antiferromagnets.- Single Crystals of Manganites and Related Materials.- Collossal Magnetoresistance and the Physics of Thin Maganite.- Dilute Magnetic Semiconductors.- Layed Co Oxides as a Thermoelectric Material.- New Magnetic Systems Exhibiting Superconductivity

Mössbauer Spectroscopy in Materials Science 2008
  • Language: en
  • Pages: 202

Mössbauer Spectroscopy in Materials Science 2008

The colloquium "Mössbauer Spectroscopy in Materials Science 2008" was devoted to the application of the Mössbauer effect in various areas as material testing, study of nanoscale systems, metallurgy, mineralogy, chemistry and biology. New developments of spectroscopy experimental technique were presented.

LACAME 2006
  • Language: en
  • Pages: 122

LACAME 2006

Proceedings of the 10th Latin American Conference on the Applications of the Mössbauer Effect (LACAME 2006) held in Rio de Janeiro City, Brazil, 5-9 November 2006. This volume demonstrates the way in which researchers, on a wide range of topics, many interdisciplinary, find the applications of the Mössbauer Effect an outstanding method whose results, sometimes unique, complements and improves the information obtained by other techniques to deepen the understanding of the matter under research. This volume comprises research papers recording original investigations on applications to diverse areas like archaeology, metallurgy, soil science, geology, industrial applications, new instrumentation, corrosion, and chemical applications. The papers present the latest scientific work of various regional investigators.

Industrial Applications of the Mössbauer Effect
  • Language: en
  • Pages: 426

Industrial Applications of the Mössbauer Effect

All papers were peer reviewed. The ISIAME symposium is concerned with the application of a nuclear technique, Mössbauer Spectroscopy, to investigate industrially related problems. This technique yields information on certain elements in the solid state, with iron being the most rewarding element. Since iron is an abundant element with many important uses, the reader of these Proceedings will find on its pages a large variety of contributions devoted to such diverse areas as catalysis, magnetism, biology and planetary science (e.g., studies of minerals on the surface of Mars).

Journal
  • Language: en
  • Pages: 1386

Journal

  • Type: Book
  • -
  • Published: 2003
  • -
  • Publisher: Unknown

None

The British National Bibliography
  • Language: en
  • Pages: 1926

The British National Bibliography

  • Type: Book
  • -
  • Published: 2003
  • -
  • Publisher: Unknown

None

Canadian Journal of Physics
  • Language: en
  • Pages: 1004

Canadian Journal of Physics

  • Type: Book
  • -
  • Published: 2015
  • -
  • Publisher: Unknown

None

Book Review Index
  • Language: en
  • Pages: 1320

Book Review Index

  • Type: Book
  • -
  • Published: 2004
  • -
  • Publisher: Unknown

Every 3rd issue is a quarterly cumulation.

Transmission Electron Microscopy and Diffractometry of Materials
  • Language: en
  • Pages: 775

Transmission Electron Microscopy and Diffractometry of Materials

This book explains concepts of transmission electron microscopy (TEM) and x-ray diffractometry (XRD) that are important for the characterization of materials. The fourth edition adds important new techniques of TEM such as electron tomography, nanobeam diffraction, and geometric phase analysis. A new chapter on neutron scattering completes the trio of x-ray, electron and neutron diffraction. All chapters were updated and revised for clarity. The book explains the fundamentals of how waves and wavefunctions interact with atoms in solids, and the similarities and differences of using x-rays, electrons, or neutrons for diffraction measurements. Diffraction effects of crystalline order, defects, and disorder in materials are explained in detail. Both practical and theoretical issues are covered. The book can be used in an introductory-level or advanced-level course, since sections are identified by difficulty. Each chapter includes a set of problems to illustrate principles, and the extensive Appendix includes laboratory exercises.