2010
DOI: 10.1007/s11467-010-0100-0
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Ultrafast optical switching in Kerr nonlinear photonic crystals

Abstract: Nonlinear photonic crystals made from polystyrene materials that have Kerr nonlinearity can exhibit ultrafast optical switching when the samples are pumped by ultrashort optical pulses with high intensity due to the change of the refractive index of polystyrene and subsequent shift of the band gap edge or defect state resonant frequency. Polystyrene has a large Kerr nonlinear susceptibility and almost instantaneous response to pump light, making it suitable for the realization of ultrafast optical switching wi… Show more

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Cited by 22 publications
(8 citation statements)
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“…Although highly nonlinear polymer or nanocomposite polymer materials can outperform semiconductor materials in terms of large Kerr coefficient and ultrafast response speed, [85][86][87][88] the success of nonlinear optical devices strongly depends on the success in fabricating these complicated devices. In Section 4 we have discussed fabrication of a 2D polystyrene NPC.…”
Section: Air-bridged Low-index Polystyrene Npc Slabmentioning
confidence: 99%
“…Although highly nonlinear polymer or nanocomposite polymer materials can outperform semiconductor materials in terms of large Kerr coefficient and ultrafast response speed, [85][86][87][88] the success of nonlinear optical devices strongly depends on the success in fabricating these complicated devices. In Section 4 we have discussed fabrication of a 2D polystyrene NPC.…”
Section: Air-bridged Low-index Polystyrene Npc Slabmentioning
confidence: 99%
“…In recent years, highly nonlinear polymer and nanocomposite polymer materials have outperformed semiconductor materials in terms of large Kerr coefficient and ultrafast response speed [3,4,7] . Although the fabrication methods for high-quality threedimensional (3D) polymeric PCs have greatly improved in the recent years [8,9] , the appropriate technique for fabricating polymeric NPC slab structures remains at its initial stages.…”
mentioning
confidence: 99%
“…By introducing the defects inside the photonic structure, scientists can control and adjust the PBG. Accordingly, many optical devices are produced such as optical filters 13,14 , optical switches 15,16 , photonic crystal fibers [17][18][19] .…”
Section: Introductionmentioning
confidence: 99%