367,10 €
407,89 €
-10% with code: EXTRA
Linear and Chiral Dichroism in the Electron Microscope
Linear and Chiral Dichroism in the Electron Microscope
367,10
407,89 €
  • We will send in 10–14 business days.
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 electr…
  • Publisher:
  • Year: 2012
  • Pages: 300
  • ISBN-10: 9814267481
  • ISBN-13: 9789814267489
  • Format: 15.5 x 23.1 x 2.3 cm, hardcover
  • Language: English
  • SAVE -10% with code: EXTRA

Linear and Chiral Dichroism in the Electron Microscope (e-book) (used book) | bookbook.eu

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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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  • Publisher:
  • Year: 2012
  • Pages: 300
  • ISBN-10: 9814267481
  • ISBN-13: 9789814267489
  • Format: 15.5 x 23.1 x 2.3 cm, hardcover
  • Language: English English

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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