JOURNAL ARTICLE

Polarization insensitivity of AlGaAs/GaAs interdiffused quantum wells

Wallace C. H. ChoyE. Herbert LiBernard L. Weiss

Year: 1998 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 3491 Pages: 242-242   Publisher: SPIE

Abstract

Modeling is used to show that interdiffusion can generate a polarization independent parabolic-like quantum well. Criteria to achieve the parabolic-like quantum wells by interdiffusion are discussed. The results indicated that interdiffused quantum wells can produce equal eigen-state spacing, polarization insensitive Stark shift and modulation characteristics similar to an ideal parabolic quantum well. The design process to obtain polarization insensitive ON- and OFF- states in the parabolic-like interdiffused quantum wells is discussed. The predicted modulation depth is comparable to those measured using parabolic quantum wells. The diffused quantum wells have the advantage of using an as-grown rectangular quantum well with post-growth annealing to tailor its confinement profile. These features suggest that the interdiffused quantum well structure can be use to produce polarization insensitive electro-absorptive modulation.

Keywords:
Polarization (electrochemistry) Quantum well Gallium arsenide Optoelectronics Materials science Physics Optics Chemistry

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