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Dielectric Spectroscopy of Electronic Materials

- Applied Physics of Dielectrics

About Dielectric Spectroscopy of Electronic Materials

Dielectric Spectroscopy of Electronic Materials: Applied Physics of Dielectrics incorporates the results of four decades of research and applications of dielectric spectroscopy for solids, mostly for the investigation of materials used in electronics. The book differs from others by more detailed analysis of the features of dielectric spectra conditioned by specific mechanisms of electrical polarization and conductivity. Some original methods are presented in the simulation of frequency distributions (relaxers and oscillators), with methods proposed for various ferroelectrics frequency-temperature dielectric spectra. Also described are original methods for ferroelectrics on microwaves investigation, including the features of thin films study. The book is not burdened by complex mathematical proofs and should help readers quickly understand how to apply dielectric spectroscopy methods to their own research problems. More advanced readers may also find this book valuable as a review of the key concepts and latest advances on the topics presented. Introduces critical material characterization techniques by an expert with more than 40 years of experience in dielectric spectroscopyReviews advances in dielectric spectroscopy methods to enable advances such as the miniaturization of electronics at the nanoscaleProvides an overview of polarization mechanisms utilizing different models (i.e., oscillator and relaxation)

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  • Language:
  • English
  • ISBN:
  • 9780128235188
  • Binding:
  • Paperback
  • Pages:
  • 376
  • Published:
  • July 8, 2021
  • Dimensions:
  • 152x229x0 mm.
  • Weight:
  • 1000 g.
Delivery: 1-2 weeks
Expected delivery: May 1, 2025

Description of Dielectric Spectroscopy of Electronic Materials

Dielectric Spectroscopy of Electronic Materials: Applied Physics of Dielectrics incorporates the results of four decades of research and applications of dielectric spectroscopy for solids, mostly for the investigation of materials used in electronics. The book differs from others by more detailed analysis of the features of dielectric spectra conditioned by specific mechanisms of electrical polarization and conductivity. Some original methods are presented in the simulation of frequency distributions (relaxers and oscillators), with methods proposed for various ferroelectrics frequency-temperature dielectric spectra. Also described are original methods for ferroelectrics on microwaves investigation, including the features of thin films study.
The book is not burdened by complex mathematical proofs and should help readers quickly understand how to apply dielectric spectroscopy methods to their own research problems. More advanced readers may also find this book valuable as a review of the key concepts and latest advances on the topics presented.
Introduces critical material characterization techniques by an expert with more than 40 years of experience in dielectric spectroscopyReviews advances in dielectric spectroscopy methods to enable advances such as the miniaturization of electronics at the nanoscaleProvides an overview of polarization mechanisms utilizing different models (i.e., oscillator and relaxation)

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