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Linear and Chiral Dichroism in the Electron Microscope

Linear and Chiral Dichroism in the Electron Microscope

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"Linear and Chiral Dichroism in the Electron Microscope" by Peter Schattschneider is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

This book describes energy loss magnetic chiral dichroism (EMCD), a phenomenon in energy loss spectroscopy discovered in 2006. EMCD is the equivalent of XMCD but is based on fast probe electrons in the electron microscope. A spatial resolution of 2 nm has been demonstrated, and the lattice-resolved mapping of atomic spins appears feasible. EMCD is, thus, a promising technique for magnetic studies on the nanometer and sub-nanometer scale, providing the technical and logistic advantages of electron microscopy, such as in situ chemical and structural information, easy access, and low cost.

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Best For: Researchers and professionals in electron microscopy and nanotechnology
Focus: Energy loss magnetic chiral dichroism (EMCD) in electron microscopy and its applications
Covers: The discovery of EMCD, its comparison to XMCD, spatial resolution capabilities, and potential for atomic spin mapping
Why It Matters: EMCD enables magnetic studies at nanometer and sub-nanometer scales with advantages like in situ chemical and structural analysis, accessibility, and cost-effectiveness

"Linear and Chiral Dichroism in the Electron Microscope" by Peter Schattschneider is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Topic: Devices & Sensors

Author: Peter Schattschneider

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

This book describes energy loss magnetic chiral dichroism (EMCD), a phenomenon in energy loss spectroscopy discovered in 2006. EMCD is the equivalent of XMCD but is based on fast probe electrons in the electron microscope. A spatial resolution of 2 nm has been demonstrated, and the lattice-resolved mapping of atomic spins appears feasible. EMCD is, thus, a promising technique for magnetic studies on the nanometer and sub-nanometer scale, providing the technical and logistic advantages of electron microscopy, such as in situ chemical and structural information, easy access, and low cost.

AuthorPeter Schattschneider
PublisherCRC Press
Published2012-03-01
ISBN-139789814267489
BindingHardcover
Pages280
LanguageEnglish
SubjectsScience
TopicDevices & Sensors

Format: Hardcover

Length: 280 pages

Language: English

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