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Viser: Luminescence Spectroscopy of Semiconductors

Luminescence Spectroscopy of Semiconductors

Luminescence Spectroscopy of Semiconductors Vital Source e-bog

Ivan Pelant og Jan Valenta
(2012)
Oxford University Press
341,00 kr. 306,90 kr.
Leveres umiddelbart efter køb
Luminescence Spectroscopy of Semiconductors

Luminescence Spectroscopy of Semiconductors Vital Source e-bog

Ivan Pelant og Jan Valenta
(2012)
Oxford University Press
296,00 kr.
Leveres umiddelbart efter køb
Luminescence Spectroscopy of Semiconductors

Luminescence Spectroscopy of Semiconductors Vital Source e-bog

Ivan Pelant og Jan Valenta
(2012)
Oxford University Press
369,00 kr. 332,10 kr.
Leveres umiddelbart efter køb
Luminescence Spectroscopy of Semiconductors
Søgbar e-bog

Luminescence Spectroscopy of Semiconductors Vital Source e-bog

Ivan Pelant og Jan Valenta
(2012)
Oxford University Press
455,00 kr.
Leveres umiddelbart efter køb
Luminescence Spectroscopy of Semiconductors

Luminescence Spectroscopy of Semiconductors

Ivan Pelant og Jan Valenta
(2016)
Sprog: Engelsk
Oxford University Press, Incorporated
599,00 kr.
Print on demand. Leveringstid vil være ca 2-3 uger.

Detaljer om varen

  • Vital Source 365 day rentals (dynamic pages)
  • Udgiver: Oxford University Press (Februar 2012)
  • Forfattere: Ivan Pelant og Jan Valenta
  • ISBN: 9780191627507R365
This book reviews up-to-date ideas of how the luminescence radiation in semiconductors originates and how to analyze it experimentally. The book fills a gap between general textbooks on optical properties of solids and specialized monographs on luminescence. It is unique in its coherent treatment of the phenomenon of luminescence from the very introductory definitions, from light emission in bulk crystalline and amorphous materials to the advanced chapters that deal with semiconductor nano objects, including spectroscopy of individual nanocrystals. The theory of radiative recombination channels in semiconductors is considered on a level of intuitive physical understanding rather than rigorous quantum mechanical treatment. The book is based on teaching and written in the style of a graduate text with plenty of tutorial material, illustrations, and problem sets at chapter ends. It is designed predominantly for students in physics, optics, optoelectronics and materials science.
Licens varighed:
Bookshelf online: 365 dage fra købsdato.
Bookshelf appen: 365 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • Vital Source 180 day rentals (dynamic pages)
  • Udgiver: Oxford University Press (Februar 2012)
  • Forfattere: Ivan Pelant og Jan Valenta
  • ISBN: 9780191627507R180
This book reviews up-to-date ideas of how the luminescence radiation in semiconductors originates and how to analyze it experimentally. The book fills a gap between general textbooks on optical properties of solids and specialized monographs on luminescence. It is unique in its coherent treatment of the phenomenon of luminescence from the very introductory definitions, from light emission in bulk crystalline and amorphous materials to the advanced chapters that deal with semiconductor nano objects, including spectroscopy of individual nanocrystals. The theory of radiative recombination channels in semiconductors is considered on a level of intuitive physical understanding rather than rigorous quantum mechanical treatment. The book is based on teaching and written in the style of a graduate text with plenty of tutorial material, illustrations, and problem sets at chapter ends. It is designed predominantly for students in physics, optics, optoelectronics and materials science.
Licens varighed:
Bookshelf online: 180 dage fra købsdato.
Bookshelf appen: 180 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • Vital Source 1460 day rentals (dynamic pages)
  • Udgiver: Oxford University Press (Februar 2012)
  • Forfattere: Ivan Pelant og Jan Valenta
  • ISBN: 9780191627507R1460
This book reviews up-to-date ideas of how the luminescence radiation in semiconductors originates and how to analyze it experimentally. The book fills a gap between general textbooks on optical properties of solids and specialized monographs on luminescence. It is unique in its coherent treatment of the phenomenon of luminescence from the very introductory definitions, from light emission in bulk crystalline and amorphous materials to the advanced chapters that deal with semiconductor nano objects, including spectroscopy of individual nanocrystals. The theory of radiative recombination channels in semiconductors is considered on a level of intuitive physical understanding rather than rigorous quantum mechanical treatment. The book is based on teaching and written in the style of a graduate text with plenty of tutorial material, illustrations, and problem sets at chapter ends. It is designed predominantly for students in physics, optics, optoelectronics and materials science.
Licens varighed:
Bookshelf online: 1460 dage fra købsdato.
Bookshelf appen: 1460 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • Vital Source searchable e-book (Reflowable pages)
  • Udgiver: Oxford University Press (Februar 2012)
  • Forfattere: Ivan Pelant og Jan Valenta
  • ISBN: 9780191627507
This book reviews up-to-date ideas of how the luminescence radiation in semiconductors originates and how to analyze it experimentally. The book fills a gap between general textbooks on optical properties of solids and specialized monographs on luminescence. It is unique in its coherent treatment of the phenomenon of luminescence from the very introductory definitions, from light emission in bulk crystalline and amorphous materials to the advanced chapters that deal with semiconductor nano objects, including spectroscopy of individual nanocrystals. The theory of radiative recombination channels in semiconductors is considered on a level of intuitive physical understanding rather than rigorous quantum mechanical treatment. The book is based on teaching and written in the style of a graduate text with plenty of tutorial material, illustrations, and problem sets at chapter ends. It is designed predominantly for students in physics, optics, optoelectronics and materials science.
Licens varighed:
Bookshelf online: 365 dage fra købsdato.
Bookshelf appen: ubegrænset dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • Paperback: 560 sider
  • Udgiver: Oxford University Press, Incorporated (April 2016)
  • Forfattere: Ivan Pelant og Jan Valenta
  • ISBN: 9780198757542
This book reviews up-to-date ideas of how the luminescence radiation in semiconductors originates and how to analyze it experimentally. The book fills a gap between general textbooks on optical properties of solids and specialized monographs on luminescence. It is unique in its coherent treatment of the phenomenon of luminescence from the very introductory definitions, from light emission in bulk crystalline and amorphous materials to the advanced chapters that deal with semiconductor nano objects, including spectroscopy of individual nanocrystals. The theory of radiative recombination channels in semiconductors is considered on a level of intuitive physical understanding rather than rigorous quantum mechanical treatment.

The book is based on teaching and written in the style of a graduate text with plenty of tutorial material, illustrations, and problem sets at chapter ends. It is designed predominantly for students in physics, optics, optoelectronics and materials science.
1. Introduction2. Experimental techniques of luminescence spectroscopy3. Kinetic description of luminescence processes4. Phonons and their participation in optical phenomena5. Channels of radiative recombination in semiconductors6. Nonradiative recombination7. Luminescence of excitons8. Highly excited semiconductors9. Luminescence of disordered semiconductors10. Stimulated emission11. Electroluminescence12. Electronic structure and luminescence of low-dimensional semiconductors13. Effects of high excitation in low-dimensional structures14. Stimulated emission and lasing in low-dimensional structures15. Silicon nanophotonics16. Photonic structures17. Spectroscopy of single semiconductor nanocrystals
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