Concepedia

Analysis of semiconductor microcavity lasers using rate equations

Gunnar Björk, Y. Yamamoto

IEEE Journal of Quantum Electronics · 1991 · 396 citations · 14 references

Concepts

Abstract

The rate equations for a microcavity semiconductor laser are solved and the steady-state behavior of the laser and some of its dynamic characteristics are investigated. It is shown that by manipulating the mode density and the spontaneous decay rates of the cavity modes, the threshold gain can be decreased and the modulation speed can be improved. However, in order to fully exploit the possibilities which the modification of the spontaneous decay opens up, the active material volume in the cavity must be smaller than a certain value. Threshold current using different definitions, population inversion factor, L-I curves, linewidth, and modulation response are discussed.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

References

14

Electric field dependence of optical absorption near the band gap of quantum-well structures

David A. B. Miller, D. S. Chemla, T. C. Damen et al. · Physical review. B, Condensed matter · 1985

+16

2K citations

Inhibited Spontaneous Emission

Daniel Kleppner · Physical Review Letters · 1981

+17

1K citations

845 citations

Inhibited Spontaneous Emission by a Rydberg Atom

Randall G. Hulet, Eric S. Hilfer, Daniel Kleppner · Physical Review Letters · 1985

+16

652 citations

Enhanced and inhibited visible spontaneous emission by atoms in a confocal resonator.

D. J. Heinzen, James Childs, J. E. Thomas et al. · PubMed · 1987

372 citations