A Bandpass Filter–Polarizer Based on a Dielectric Multilayer with Strip Conductor Gratings
A new design of a multilayer bandpass filter is proposed, in which each resonator consists of two identical dielectric layers with parallel strip conductor gratings on their outer surfaces and an orthogonal strip conductor grating between the layers. The filter designed on the basis of crossed grati...
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Veröffentlicht in: | Doklady. a journal of the Russian Academy of Sciences. Physics 2020-07, Vol.65 (7), p.225-229 |
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container_title | Doklady. a journal of the Russian Academy of Sciences. Physics |
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creator | Belyaev, B. A. Tyurnev, V. V. Voloshin, A. S. Leksikov, An. A. Galeev, R. G. Shabanov, V. F. |
description | A new design of a multilayer bandpass filter is proposed, in which each resonator consists of two identical dielectric layers with parallel strip conductor gratings on their outer surfaces and an orthogonal strip conductor grating between the layers. The filter designed on the basis of crossed gratings works simultaneously as a polarizer transparent in a specified frequency band if the electric field vector of a wave is parallel to the outer strip conductors but reflects waves with an orthogonal polarization. The data from a numerical electrodynamic analysis of a 3D model of the proposed device agree well with the results of the measurements performed on the fifth-order filter–polarizer prototype with a relative bandwidth of 14% and a central frequency of 13.4 GHz. The microwave power loss in the filter passband is ~1.2 dB under parallel polarization of the electromagnetic wave and more than 40 dB under orthogonal polarization. |
doi_str_mv | 10.1134/S1028335820050067 |
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The data from a numerical electrodynamic analysis of a 3D model of the proposed device agree well with the results of the measurements performed on the fifth-order filter–polarizer prototype with a relative bandwidth of 14% and a central frequency of 13.4 GHz. The microwave power loss in the filter passband is ~1.2 dB under parallel polarization of the electromagnetic wave and more than 40 dB under orthogonal polarization.</description><identifier>ISSN: 1028-3358</identifier><identifier>EISSN: 1562-6903</identifier><identifier>DOI: 10.1134/S1028335820050067</identifier><language>eng</language><publisher>Moscow: Pleiades Publishing</publisher><subject>Bandpass filters ; Classical Mechanics ; Conductors ; Electric fields ; Electromagnetic radiation ; Frequencies ; Mathematical and Computational Physics ; Multilayers ; Physics ; Physics and Astronomy ; Polarization ; Polarizers ; Strip ; Theoretical ; Three dimensional models</subject><ispartof>Doklady. a journal of the Russian Academy of Sciences. 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The data from a numerical electrodynamic analysis of a 3D model of the proposed device agree well with the results of the measurements performed on the fifth-order filter–polarizer prototype with a relative bandwidth of 14% and a central frequency of 13.4 GHz. The microwave power loss in the filter passband is ~1.2 dB under parallel polarization of the electromagnetic wave and more than 40 dB under orthogonal polarization.</description><subject>Bandpass filters</subject><subject>Classical Mechanics</subject><subject>Conductors</subject><subject>Electric fields</subject><subject>Electromagnetic radiation</subject><subject>Frequencies</subject><subject>Mathematical and Computational Physics</subject><subject>Multilayers</subject><subject>Physics</subject><subject>Physics and Astronomy</subject><subject>Polarization</subject><subject>Polarizers</subject><subject>Strip</subject><subject>Theoretical</subject><subject>Three dimensional models</subject><issn>1028-3358</issn><issn>1562-6903</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><recordid>eNp1kMFKxDAURYMoOI5-gLuA6-pL0iTtchydURhRGN0JJW2TMUNta5Ii48p_8A_9EiMjuBBX7_HuuffBReiYwCkhLD1bEqAZYzyjABxAyB00IlzQROTAduMe5eRb30cH3q8BIGeMjNDjBJ-rtu6V93hmm6Dd5_vHXdcoZ9-0i5rXNe5arPCF1Y2ugrMVvhmaYBu1icCrDU94Ga89nnZtPVShc3juVLDtyh-iPaMar49-5hg9zC7vp1fJ4nZ-PZ0skooRERKpQXGqKRhTZtwowinhuqxTwXhqJJVVKahgUClVpzIrSU5yYwC0YcCJyNkYnWxze9e9DNqHYt0Nro0vC5pKJmVGMhkpsqUq13nvtCl6Z5-V2xQEiu8Siz8lRg_denxk25V2v8n_m74AZAdzrQ</recordid><startdate>20200701</startdate><enddate>20200701</enddate><creator>Belyaev, B. 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A.</creatorcontrib><creatorcontrib>Galeev, R. G.</creatorcontrib><creatorcontrib>Shabanov, V. F.</creatorcontrib><collection>CrossRef</collection><jtitle>Doklady. a journal of the Russian Academy of Sciences. Physics</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Belyaev, B. A.</au><au>Tyurnev, V. V.</au><au>Voloshin, A. S.</au><au>Leksikov, An. A.</au><au>Galeev, R. G.</au><au>Shabanov, V. F.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>A Bandpass Filter–Polarizer Based on a Dielectric Multilayer with Strip Conductor Gratings</atitle><jtitle>Doklady. a journal of the Russian Academy of Sciences. Physics</jtitle><stitle>Dokl. Phys</stitle><date>2020-07-01</date><risdate>2020</risdate><volume>65</volume><issue>7</issue><spage>225</spage><epage>229</epage><pages>225-229</pages><issn>1028-3358</issn><eissn>1562-6903</eissn><abstract>A new design of a multilayer bandpass filter is proposed, in which each resonator consists of two identical dielectric layers with parallel strip conductor gratings on their outer surfaces and an orthogonal strip conductor grating between the layers. The filter designed on the basis of crossed gratings works simultaneously as a polarizer transparent in a specified frequency band if the electric field vector of a wave is parallel to the outer strip conductors but reflects waves with an orthogonal polarization. The data from a numerical electrodynamic analysis of a 3D model of the proposed device agree well with the results of the measurements performed on the fifth-order filter–polarizer prototype with a relative bandwidth of 14% and a central frequency of 13.4 GHz. The microwave power loss in the filter passband is ~1.2 dB under parallel polarization of the electromagnetic wave and more than 40 dB under orthogonal polarization.</abstract><cop>Moscow</cop><pub>Pleiades Publishing</pub><doi>10.1134/S1028335820050067</doi><tpages>5</tpages></addata></record> |
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subjects | Bandpass filters Classical Mechanics Conductors Electric fields Electromagnetic radiation Frequencies Mathematical and Computational Physics Multilayers Physics Physics and Astronomy Polarization Polarizers Strip Theoretical Three dimensional models |
title | A Bandpass Filter–Polarizer Based on a Dielectric Multilayer with Strip Conductor Gratings |
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