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Scanning Nonlinear Dielectric Microscopy: Investigation of Ferroelectric, Dielectric, and Semiconductor Materials and Devices: Woodhead Publishing Series in Electronic and Optical Materials

Autor Yasuo Cho
en Limba Engleză Paperback – 21 mai 2020
Scanning Nonlinear Dielectric Microscopy: Investigation of Ferroelectric, Dielectric, and Semiconductor Materials and Devices is the definitive reference on an important tool to characterize ferroelectric, dielectric and semiconductor materials. Written by the inventor, the book reviews the methods for applying the technique to key materials applications, including the measurement of ferroelectric materials at the atomic scale and the visualization and measurement of semiconductor materials and devices at a high level of sensitivity. Finally, the book reviews new insights this technique has given to material and device physics in ferroelectric and semiconductor materials.
The book is appropriate for those involved in the development of ferroelectric, dielectric and semiconductor materials devices in academia and industry.


  • Presents an in-depth look at the SNDM materials characterization technique by its inventor
  • Reviews key materials applications, such as measurement of ferroelectric materials at the nanoscale and measurement of semiconductor materials and devices
  • Analyzes key insights on semiconductor materials and device physics derived from the SNDM technique
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Specificații

ISBN-13: 9780128172469
ISBN-10: 0128172460
Pagini: 256
Ilustrații: 120 illustrations (30 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.35 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Electronic and Optical Materials


Public țintă

Materials Scientists and Engineers, Electrical Engineers, Physicists, Researchers in both academia and R&D

Cuprins

1. Principals of scanning nonlinear dielectric microscopy for measuring ferroelectric and dielectric polarization
2. Ferroelectric polarization measurement
3. Three-dimensional polarization measurement
4. Ultra high-density ferroelectric data storage using scanning nonlinear dielectric microscopy
5. Linear permittivity measurement by scanning nonlinear dielectric microscopy
6. Noncontact scanning nonlinear dielectric microscopy
7. Scanning nonlinear dielectric potentiometry for measurement of the potential induced by atomic dipole measurements
8. Principles of scanning nonlinear dielectric microscopy for semiconductor measurements
9. Carrier distribution measurement in semiconductor materials and devices
10. Super-higher-order scanning nonlinear dielectric microscopy
11. Local deep-level transient spectroscopy
12. Time-resolved scanning nonlinear dielectric microscopy