By Motoichi Ohtsu

This quantity specializes in the characterization of nano-optical fabrics and optical-near box interactions. It starts with the techniques for characterizing the magneto-optical Kerr impression and continues with methods to determine structural and optical homes in top quality quantum wires with excessive spatial uniformity. extra themes contain: near-field luminescence mapping in InGaN/GaN unmarried quantum good constructions so that it will interpret the recombination mechanism in InGaN-based nano-structures; and theoretical remedy of the optical close to box and optical near-field interactions, offering the root for investigating the sign shipping and linked dissipation in nano-optical units. Taken as an entire, this evaluate might be a important source for engineers and scientists operating within the box of nano-electro-optics.

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Extra resources for Progress in Nano-Electro Optics IV: Characterization of Nano-Optical Materials and Optical Near-Field Interactions (Springer Series in Optical Sciences) (v. 4)

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The images of the droplet phase, obtained by SPLEEM [67] obviously show pinning. Also, recent SEMPA studies of the thermally induced transformation processes of stripe domains in ultrathin films of Fe/Cu(100) show a certain positional order in addition to the orientational order of stripes, which can be attributed to pinning [77]. The quintessence of our studies so far is a model of the magnetizationreversal process of ultrathin films in the vicinity of a spin-reorientation phase transition. Taking into account pinning effects, we suggest a two-dimensional growth process via defect-induced branching and domain nucleation.

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