By Oleksiy Shulika, Igor Sukhoivanov
This booklet offers a set of prolonged contributions at the physics and alertness of optoelectronic fabrics and metamaterials. The ebook is split into 3 elements, respectively protecting fabrics, metamaterials and optoelectronic units. person chapters disguise themes together with phonon-polariton interplay, semiconductor and nonlinear natural fabrics, steel, dielectric and gyrotropic metamaterials, singular optics, parity-time symmetry, nonlinear plasmonics, microstructured optical fibers, passive nonlinear shaping of ultrashort pulses, and pulse-preserving supercontinuum generation.
The ebook comprises either experimental and theoretical stories, and every contribution is a self-contained exposition of a specific subject, that includes an intensive reference record. The ebook may be an invaluable source for graduate and postgraduate scholars, researchers and engineers occupied with optoelectronics/photonics, quantum electronics, optics, and adjoining components of technological know-how and technology.
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Extra resources for Contemporary Optoelectronics: Materials, Metamaterials and Device Applications
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The principal drawback of the TPEF method is that it cannot be used for non-fluorescing or weakly fluorescing materials. TPEF is also difﬁcult to implement in compounds that exhibit wavelength-dependent emission (in either band shape or efﬁciency) or dual emission, as well as in solid-state samples. In those cases the use of Z-scan is more convenient. A wide range of organic molecules with large TPA activity have been studied experimentally employing Z-scan and TPEF techniques. In the following section we present some representative samples.
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