2020
DOI: 10.1007/s11468-019-01078-6
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A Multifunctional Integrated Design of Simultaneous Unity Absorption and Polarization Conversion

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Cited by 6 publications
(2 citation statements)
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“…49 R ( ω ) TE = | r xy | 2 + | r yy | 2 R ( ω ) TM = | r yx | 2 + | r xx | 2 Here, r xy = | E x r |/| E y i |, r yx = | H y r |/| H x i | and r yy = | E y r |/| E y i |, r xx = | H x r |/| H x i | are the cross-polarized and co-polarized reflection coefficient components. 71,72 Here E y i is the electric field of the incident wave in the y direction. E x r and E y r are the reflected electric field in the x and y directions, respectively.…”
Section: Design Methodologymentioning
confidence: 99%
See 1 more Smart Citation
“…49 R ( ω ) TE = | r xy | 2 + | r yy | 2 R ( ω ) TM = | r yx | 2 + | r xx | 2 Here, r xy = | E x r |/| E y i |, r yx = | H y r |/| H x i | and r yy = | E y r |/| E y i |, r xx = | H x r |/| H x i | are the cross-polarized and co-polarized reflection coefficient components. 71,72 Here E y i is the electric field of the incident wave in the y direction. E x r and E y r are the reflected electric field in the x and y directions, respectively.…”
Section: Design Methodologymentioning
confidence: 99%
“…Here, 71,72 Here E yi is the electric field of the incident wave in the y direction. E xr and E yr are the reflected electric field in the x and y directions, respectively.…”
Section: Design Evaluationmentioning
confidence: 99%