Metamaterials, including their two-dimensional counterparts, are
composed of subwavelength-scale artificial particles. These
materials have novel electromagnetic properties, and can be
artificially tailored for various applications. Based on
metamaterials and metasurfaces, many abnormal physical phenomena
have been realized, such as negative refraction, invisible
cloaking, abnormal reflection and focusing, and many new functions
and devices have been developed. The effective medium theory lays
the foundation for design and application of metamaterials and
metasurfaces, connecting metamaterials with real world
applications. In this Element, the authors combine these essential
ingredients, and aim to make this Element an access point to this
field. To this end, they review classical theories for dielectric
functions, effective medium theory, and effective parameter
extraction of metamaterials, also introducing front edge
technologies like metasurfaces with theories, methods, and
potential applications. Energy densities are also included.
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