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- W4386932450 abstract "It is not unexpected given the recent quick advancements in the realm of metamaterials that the concept of metamaterials was uncovered as quickly as the foundations for macroscopic characterization were established and a strong similarity to optical crystals was made clear. There has been a significant amount of interest in and growth in electromagnetic materials. Using SPR sensors, metamaterials, a new family of artificial electromagnetic (EM) substances with subwavelength regularity that is strongly influenced by indices of refraction, are helpful. During the year 2000, production of them within the microwave range of frequencies started. Notable cases of unusual phenomena like immaculate focusing, negative index of refraction, and transparency cloaking have sparked a lot of interest in them. The emerging area of electromagnetic metamaterials has given rise to novel phenomena like the negative index of refraction and technological innovations like the electromagnetic cloak. Engineered electromagnetic materials have advanced significantly within a decade of studying metamaterials, from microwave to optical frequencies. The various kinds of metamaterials were covered in this chapter, along with their characteristics and uses. The theory, experimentation, and uses of metamaterials are briefly highlighted in this chapter. The primary emphasis is placed on the meta-atoms that make up matter, how light is transformed, how negative refraction works in practice, and other topics. The many different procedures used to create metamaterials with dynamic behavior are logically divided into different groups and are then graphically presented. Metamaterial technology has advanced for several applications in the last ten years. Countless innovative metamaterial types with unusual electromagnetic properties, such as negative index, optical magnetism, etc., have been discovered. The field of electromagnetic metamaterials has experienced remarkable expansion and attention given the recent demonstration of unique phenomena." @default.
- W4386932450 created "2023-09-22" @default.
- W4386932450 creator A5058856294 @default.
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- W4386932450 date "2023-09-20" @default.
- W4386932450 modified "2023-10-16" @default.
- W4386932450 title "Properties and Applications of Electromagnetic Metamaterials" @default.
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- W4386932450 doi "https://doi.org/10.1002/9781394167074.ch11" @default.
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