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Magnetism and Synchrotron Radiation - New Trends (Hardcover, 2010 ed.): Eric Beaurepaire, Herve Bulou, Fabrice Scheurer,... Magnetism and Synchrotron Radiation - New Trends (Hardcover, 2010 ed.)
Eric Beaurepaire, Herve Bulou, Fabrice Scheurer, Kappler Jean-Paul
R5,517 Discovery Miles 55 170 Ships in 10 - 15 working days

Advances in the synthesis of new materials with often complex, nano-scaled structures require increasingly sophisticated experimental techniques that can probe the electronic states, the atomic magnetic moments and the magnetic microstructures responsible for the properties of these materials.

At the same time, progress in synchrotron radiation techniques has ensured that these light sources remain a key tool of investigation, e.g. synchrotron radiation sources of the third generation are able to support magnetic imaging on a sub-micrometer scale.

With the Fifth Mittelwihr School on Magnetism and Synchrotron Radiation the tradition of teaching the state-of-the-art on modern research developments continues and is expressed through the present set of extensive lectures provided in this volume. While primarily aimed at postgraduate students and newcomers to the field, this volume will also benefit researchers and lecturers actively working in the field.

Magnetism and Synchrotron Radiation: Towards the Fourth Generation Light Sources - Proceedings of the 6th International School... Magnetism and Synchrotron Radiation: Towards the Fourth Generation Light Sources - Proceedings of the 6th International School "Synchrotron Radiation and Magnetism", Mittelwihr (France), 2012 (Hardcover, 2013 ed.)
Eric Beaurepaire, Herve Bulou, Loic Joly, Fabrice Scheurer
R6,332 Discovery Miles 63 320 Ships in 12 - 17 working days

Advances in the synthesis of new materials with often complex, nano-scaled structures require increasingly sophisticated experimental techniques that can probe the electronic states, the atomic magnetic moments and the magnetic microstructures responsible for the properties of these materials.

At the same time, progress in synchrotron radiation techniques has ensured that these light sources remain a key tool of investigation, e.g. synchrotron radiation sources of the third generation are able to support magnetic imaging on a sub-micrometer scale.

With the Sixth Mittelwihr School on Magnetism and Synchrotron Radiation the tradition of teaching the state-of-the-art on modern research developments continues and is expressed through the present set of extensive lectures provided in this volume. While primarily aimed at postgraduate students and newcomers to the field, this volume will also benefit researchers and lecturers actively working in the field.

Magnetism: A Synchrotron Radiation Approach (Hardcover, 2006 ed.): Eric Beaurepaire, Herve Bulou, Fabrice Scheurer, Jean-Paul... Magnetism: A Synchrotron Radiation Approach (Hardcover, 2006 ed.)
Eric Beaurepaire, Herve Bulou, Fabrice Scheurer, Jean-Paul Kappler
R1,571 Discovery Miles 15 710 Ships in 10 - 15 working days

This volume contains the edited lectures of the fourth Mittelwihr school on "Magnetism
and Synchrotron Radiation." This series of events introduces graduate students and
nonspecialists from related disciplines to the field of magnetism and magnetic materials
with emphasis on synchrotron radiation as an experimental tool of investigation. These lecture notes present in particular the state of the art regarding the analysis of magnetic properties of new materials.

Magnetism and Accelerator-Based Light Sources - Proceedings of the 7th International School ''Synchrotron Radiation... Magnetism and Accelerator-Based Light Sources - Proceedings of the 7th International School ''Synchrotron Radiation and Magnetism'', Mittelwihr (France), 2018 (Hardcover, 1st ed. 2021)
Herve Bulou, Loic Joly, Jean-Michel Mariot, Fabrice Scheurer
R1,540 Discovery Miles 15 400 Ships in 12 - 17 working days

This open access book collects the contributions of the seventh school on Magnetism and Synchrotron Radiation held in Mittelwihr, France, from 7 to 12 October 2018. It starts with an introduction to the physics of modern X-ray sources followed by a general overview of magnetism. Next, light / matter interaction in the X-ray range is covered with emphasis on different types of angular dependence of X-ray absorption spectroscopy and scattering. In the end, two domains where synchrotron radiation-based techniques led to new insights in condensed matter physics, namely spintronics and superconductivity, are discussed. The book is intended for advanced students and researchers to get acquaintance with the basic knowledge of X-ray light sources and to step into synchrotron-based techniques for magnetic studies in condensed matter physics or chemistry.

Atomic-Scale Modeling of Nanosystems and Nanostructured Materials (Hardcover, 2010 ed.): Carlo Massobrio, Herve Bulou,... Atomic-Scale Modeling of Nanosystems and Nanostructured Materials (Hardcover, 2010 ed.)
Carlo Massobrio, Herve Bulou, Christine Goyhenex
R1,540 Discovery Miles 15 400 Ships in 10 - 15 working days

Understanding the structural organization of materials at the atomic scale is a lo- standing challenge of condensed matter physics and chemistry. By reducing the size of synthesized systems down to the nanometer, or by constructing them as collection of nanoscale size constitutive units, researchers are faced with the task of going beyond models and interpretations based on bulk behavior. Among the wealth of new materials having in common a "nanoscale" ngerprint, one can encounter systems intrinsically extending to a few nanometers (clusters of various compo- tions), systems featuring at least one spatial dimension not repeated periodically in space and assemblies of nanoscale grains forming extended compounds. For all these cases, there is a compelling need of an atomic-scale information combining knowledge of the topology of the system and of its bonding behavior, based on the electronic structure and its interplay with the atomic con gurations. Recent dev- opments in computer architectures and progresses in available computational power have made possible the practical realization of a paradygma that appeared totally unrealistic at the outset of computer simulations in materials science. This consists inbeing able to parallel (at least inprinciple) any experimental effort by asimulation counterpart, this occurring at the scale most appropriate to complement and enrich the experiment.

Magnetism and Synchrotron Radiation: Towards the Fourth Generation Light Sources - Proceedings of the 6th International School... Magnetism and Synchrotron Radiation: Towards the Fourth Generation Light Sources - Proceedings of the 6th International School "Synchrotron Radiation and Magnetism", Mittelwihr (France), 2012 (Paperback, Softcover reprint of the original 1st ed. 2013)
Eric Beaurepaire, Herve Bulou, Loic Joly, Fabrice Scheurer
R6,421 Discovery Miles 64 210 Ships in 10 - 15 working days

Advances in the synthesis of new materials with often complex, nano-scaled structures require increasingly sophisticated experimental techniques that can probe the electronic states, the atomic magnetic moments and the magnetic microstructures responsible for the properties of these materials. At the same time, progress in synchrotron radiation techniques has ensured that these light sources remain a key tool of investigation, e.g. synchrotron radiation sources of the third generation are able to support magnetic imaging on a sub-micrometer scale. With the Sixth Mittelwihr School on Magnetism and Synchrotron Radiation the tradition of teaching the state-of-the-art on modern research developments continues and is expressed through the present set of extensive lectures provided in this volume. While primarily aimed at postgraduate students and newcomers to the field, this volume will also benefit researchers and lecturers actively working in the field.

Magnetism and Synchrotron Radiation - New Trends (Paperback, 2010 ed.): Eric Beaurepaire, Herve Bulou, Fabrice Scheurer,... Magnetism and Synchrotron Radiation - New Trends (Paperback, 2010 ed.)
Eric Beaurepaire, Herve Bulou, Fabrice Scheurer, Kappler Jean-Paul
R5,471 Discovery Miles 54 710 Ships in 10 - 15 working days

Advances in the synthesis of new materials with often complex, nano-scaled structures require increasingly sophisticated experimental techniques that can probe the electronic states, the atomic magnetic moments and the magnetic microstructures responsible for the properties of these materials. At the same time, progress in synchrotron radiation techniques has ensured that these light sources remain a key tool of investigation, e.g. synchrotron radiation sources of the third generation are able to support magnetic imaging on a sub-micrometer scale. With the Fifth Mittelwihr School on Magnetism and Synchrotron Radiation the tradition of teaching the state-of-the-art on modern research developments continues and is expressed through the present set of extensive lectures provided in this volume. While primarily aimed at postgraduate students and newcomers to the field, this volume will also benefit researchers and lecturers actively working in the field.

Atomic-Scale Modeling of Nanosystems and Nanostructured Materials (Paperback, 2010 ed.): Carlo Massobrio, Herve Bulou,... Atomic-Scale Modeling of Nanosystems and Nanostructured Materials (Paperback, 2010 ed.)
Carlo Massobrio, Herve Bulou, Christine Goyhenex
R1,496 Discovery Miles 14 960 Ships in 10 - 15 working days

Understanding the structural organization of materials at the atomic scale is a lo- standing challenge of condensed matter physics and chemistry. By reducing the size of synthesized systems down to the nanometer, or by constructing them as collection of nanoscale size constitutive units, researchers are faced with the task of going beyond models and interpretations based on bulk behavior. Among the wealth of new materials having in common a "nanoscale" ngerprint, one can encounter systems intrinsically extending to a few nanometers (clusters of various compo- tions), systems featuring at least one spatial dimension not repeated periodically in space and assemblies of nanoscale grains forming extended compounds. For all these cases, there is a compelling need of an atomic-scale information combining knowledge of the topology of the system and of its bonding behavior, based on the electronic structure and its interplay with the atomic con gurations. Recent dev- opments in computer architectures and progresses in available computational power have made possible the practical realization of a paradygma that appeared totally unrealistic at the outset of computer simulations in materials science. This consists inbeing able to parallel (at least inprinciple) any experimental effort by asimulation counterpart, this occurring at the scale most appropriate to complement and enrich the experiment.

Magnetism and Accelerator-Based Light Sources - Proceedings of the 7th International School ''Synchrotron Radiation... Magnetism and Accelerator-Based Light Sources - Proceedings of the 7th International School ''Synchrotron Radiation and Magnetism'', Mittelwihr (France), 2018 (Paperback)
Herve Bulou, Loic Joly, Jean-Michel Mariot
R1,324 Discovery Miles 13 240 Ships in 10 - 15 working days
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