The effect on the dynamics of intrinsic stimulated picosecond emission of the AlxGa1–xAs–GaAs–AlxGa1–xAs heterostructure exerted by a dynamic photonic crystal induced by this emission

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription or Fee Access

Abstract

It has been found that those interference of stimulated picosecond emission of the AlxGa1–xAs–GaAs–AlxGa1–xAs heterostructure, created by a dynamic photonic crystal induced by this emis-sion in a GaAs layer, significantly modifies the pulse envelopes of the spectral components of the emission. It has been established that discrete changes in the photonic crystal that change the interference occur under the influence of those part of the emission reflected from the end of the heterostructure.

About the authors

I. L. Bronevoi

Kotel’nikov Institute of Radioengeneering and Electronics of RAS

Email: bil@cplire.ru
Mokhovaya str., 11, build. 7, Moscow, 125009 Russian Federation

A. N. Krivonosov

Kotel’nikov Institute of Radioengeneering and Electronics of RAS

Author for correspondence.
Email: bil@cplire.ru
Mokhovaya str., 11, build. 7, Moscow, 125009 Russian Federation

References

  1. Агеева Н.Н., Броневой И.Л., Забегаев Д.Н., Кривоносов А.Н. // ФТП. 2020. Т. 54. № 10. С. 1018.
  2. Агеева Н.Н., Броневой И.Л., Кривоносов А.Н. // РЭ. 2025. Т. 70. № 1. С. 65.
  3. Агеева Н.Н., Броневой И.Л., Кривоносов А.Н. // ЖЭТФ. 2022. Т. 162. № 6. С. 1018.
  4. Агеева Н.Н., Броневой И.Л., Кривоносов А.Н. // РЭ. 2023. Т. 68. № 3. С. 211.
  5. Семенов Н.А. Техническая электродинамика. М.: Связь, 1973.
  6. Marple D.T.F. // J. Appl. Phys. 1964. V. 35. № 4. P. 1241.
  7. Ривлин А. Динамика излучения полупроводниковых квантовых генераторов. М.: Сов. радио, 1976.
  8. Агеева Н.Н., Броневой И.Л., Забегаев Д.Н., Кривоносов А.Н. // ЖЭТФ. 2013. Т. 143. С. 634.
  9. Агеева Н.Н., Броневой И.Л., Забегаев Д.Н., Кривоносов А.Н. // ЖЭТФ. 2013. Т. 144. С. 227.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2025 Russian Academy of Sciences