2005•Unpublished venueRequires access

Phase space filling effects on exciton dynamics

D. Wang, Marc M. Dignam, Margaret Hawton

Open publisher page 2 citations

Abstract

We model phase space filling effects in semiconductors excited via ultrashort optical pulses. We find that at high densities, groundstate excitons are strongly scattered into excited states, even in the absence of exciton-exciton interactions.

About this research paper

What this paper is about

We model phase space filling effects in semiconductors excited via ultrashort optical pulses. We find that at high densities, groundstate excitons are strongly scattered into excited states, even in the absence of exciton-exciton interactions.

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Available abstract

We model phase space filling effects in semiconductors excited via ultrashort optical pulses. We find that at high densities, groundstate excitons are strongly scattered into excited states, even in the absence of exciton-exciton interactions.

Key concepts: Exciton, Excited state, Physics, Biexciton, Space (punctuation), Dynamics (music), Semiconductor, Phase space

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