Effective permittivity and third-order nonlinear susceptibility for a dilute composite consisting of partially aligned nanorods

The expected permittivity and third-order nonlinear susceptibility of a composite consisting of semiconductor nanorods (NRs) dispersed in a polymer host are derived using a generalized Maxwell Gamett model under various NR axis orientation statistics, achieved by an aligning electric field. The semi...

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Veröffentlicht in:Journal of the Optical Society of America. B, Optical physics Optical physics, 2013-07, Vol.30 (7), p.1864-1871
Hauptverfasser: Lior, Yedidya, Marom, Dan M.
Format: Artikel
Sprache:eng
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Zusammenfassung:The expected permittivity and third-order nonlinear susceptibility of a composite consisting of semiconductor nanorods (NRs) dispersed in a polymer host are derived using a generalized Maxwell Gamett model under various NR axis orientation statistics, achieved by an aligning electric field. The semiconductor NRs are analyzed as prolate spheroids and modeled as more realistic capsule shapes. From the angular distribution function of the NRs, the composite macroscopic characteristics are found for low filling fractions. As the alignment field strength increases, the composite optical properties asymptotically converge toward the nematic case. Aligning fields of order 10 super(7) V/m are required for the optical properties to increase to half the value between random orientation and nematic array composites.
ISSN:0740-3224
1520-8540
DOI:10.1364/JOSAB.30.001864