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Thin films and multilayered structures are increasingly used in the industry.
Currently, multilayered structures are yet to be covered by the regulatory guidelines that govern the fabrication of nanotechnology products.
However, exact analytical solutions involving optimal design of transiently loaded multilayered structures, are rare in the literature.
Reflectance and transmitted amplitude of electromagnetic waves through these periodic multilayered structures are calculated for different intensities of controlling wave.
Hard ceramic and ductile metal materials combined in multilayered structures are well-known to produce coatings with improved mechanical and tribological behavior.
Usually, PS multilayered structures are designed by alternating low- and high-porosity layers like a Bragg mirror[14] or a mechanically stable, gradually varying Gaussian-like periodic profile[15, 16].
Similar(54)
Corresponding multilayered structures were characterized using reflectometry.
The design of quasi perfect absorbers based on ITO/TiN multilayered structures is here discussed.
Current voltage characteristics and PV response of multilayered structures is determined in metal-ferroelectric-metal (MFM) capacitor configuration.
In the present paper a generalization of the Refined Zigzag Theory (RZT) to doubly-curved multilayered structures is proposed.
Co3O4 multilayered structures were successfully synthesized by a facile poly (ethylene glycol 20000) (PEG-20000) assisted hydrothermal technique in combination with calcination method.
Related(20)
manifold structures are
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