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Growth & Design of CRYSTAL by Software Simulation Electronic Equipment

Om Growth & Design of CRYSTAL by Software Simulation Electronic Equipment

This book is designed to help researchers and PG students better understand the concept of crystal growth techniques and methods. In this book, a crystal for use as a nonlinear element in nonlinear optical devices has been studied. Also, there are many organic materials (L-valine, L-glutamic acid, L-histidine, urea, etc ) that exhibit very high second harmonic generation which is very important as an NLO crystal for device application. This book was aimed at studying the effect of amino acid(L-valine) doping on the growth and characterization of non-linear optical crystals of KDP. An amino acid additive Bulk-size crystal of KDP has been grown. Overviews of different methods of crystal growth techniques and experimental aspects of low-temperature solution growth methods have been studied.

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  • Språk:
  • Engelska
  • ISBN:
  • 9786207459254
  • Format:
  • Häftad
  • Sidor:
  • 64
  • Utgiven:
  • 16. januari 2024
  • Mått:
  • 150x4x220 mm.
  • Vikt:
  • 113 g.
  Fri leverans
Leveranstid: 2-4 veckor
Förväntad leverans: 20. december 2024
Förlängd ångerrätt till 31. januari 2025

Beskrivning av Growth & Design of CRYSTAL by Software Simulation Electronic Equipment

This book is designed to help researchers and PG students better understand the concept of crystal growth techniques and methods. In this book, a crystal for use as a nonlinear element in nonlinear optical devices has been studied. Also, there are many organic materials (L-valine, L-glutamic acid, L-histidine, urea, etc ) that exhibit very high second harmonic generation which is very important as an NLO crystal for device application. This book was aimed at studying the effect of amino acid(L-valine) doping on the growth and characterization of non-linear optical crystals of KDP. An amino acid additive Bulk-size crystal of KDP has been grown. Overviews of different methods of crystal growth techniques and experimental aspects of low-temperature solution growth methods have been studied.

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