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Paper Title: A REVIEW ON MULTI BAND POLARIZATION – INSENSITIVE METAMETARIAL ABSORBER FOR EM INTERFERENCE & COMPATIBILITY
Authors Name: Jayant Kumar Sahu , Namrata Sahayam
Unique Id: IJRTI1810013
Published In: Volume 3 Issue 10, October-2018
Abstract: This paper studys advantages of different convensional metamaterial structure absorber and their application. Metamaterial are engineered arrangement that enhance electromagmetic properties they are not found in natural materials. Research are making effort eventually become Metter of concern for wide range of microwave frequency band application.Metamaterial absorber superiorty over conventional absorber due to their paper thin thickness, incredible absorbility and ease to manufacture The absorber is constructed of a delicate periodic structures and a metallic background plane, separated by a dielectric substrate. In negative-index metamaterials (NIM), both permittivity and permeability are negative, resulting in a negative index of refraction . These are also known as double negative metamaterials or double negative materials (DNM). Other terms for NIMs include "left-handed media", "media with a negative refractive index", and "backward-wave media". In optical materials, if both permittivity ε and permeability µ are positive, wave propagation travels in the forward direction. If both ε and µ are negative, a backward wave is produced. If ε and µ have different polarities, waves do not propagate.
Keywords: Metamaterial, microwave absorber, frequency, EM wave, polarization-insensitive
Cite Article: "A REVIEW ON MULTI BAND POLARIZATION – INSENSITIVE METAMETARIAL ABSORBER FOR EM INTERFERENCE & COMPATIBILITY", International Journal of Science & Engineering Development Research (www.ijrti.org), ISSN:2455-2631, Vol.3, Issue 10, page no.68 - 71, October-2018, Available :http://www.ijrti.org/papers/IJRTI1810013.pdf
Downloads: 000646
Publication Details: Published Paper ID: IJRTI1810013
Registration ID:180519
Published In: Volume 3 Issue 10, October-2018
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ISSN Number: 2456 - 3315
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