Back to results
Bibliographic record · Consultation and access
Artículo de revista

A multifunctional bi-anisotropic metasurface with reflection-transmission polarization conversion and narrow bandpass transmission characteristics

Muhammad Nasir et al · Nature Portfolio · 2026

Open access available
Quick overview. Review the resource’s basic details, then access the content using the main button. This page shows only the information needed to identify, cite, and open the work.
Serial publication

3D scan-based classification of Chinese young female hand morphology

This serial publication contains 688 related contents.

Resource access

Open the content from the main option or choose another available source.

DOAJ DOAJ Articles
Entrar por DOAJ
Main access

Open access available

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Open resource

Summary

Descripción general del contenido del recurso.

Abstract A novel multifunctional bi-anisotropic omega metasurface (MS) that simultaneously supports polarization transformation in both reflection and transmission modes, as well as narrow bandpass transmission functionality, is proposed by combining a patterned polarization-converting surface with a cross-dipole bandpass frequency-selective surface (BP-FSS). The BP-FSS, etched inside the metal ground, provides a reflection-transmission frequency response and acts as an equivalent ground plane. When the incident wave is illuminated from +Z-side (forward direction), the entire MS exhibits two reflective circularly polarized and cross-polarized bands separated by a low-loss bandpass window. Under the −Z-side (backward direction) excitation, the structure functions as a partial reflector (PR) outside the bandpass region without altering the polarization state of the incident wave. For both ±Z-sided excitation, the MS maintains symmetric transmission responses, realizing a narrow bandpass window with an insertion loss (IL) of less than − 1 dB and two partial transmissive cross-polarization (TCP) conversion bands. The proposed concept is validated through equivalent circuit models (ECMs) of the BP-FSS and the cascaded MS, along with measurements of a fabricated 17 $$\times$$ 29 unit-cell prototype, confirming excellent agreement with simulations. Compared with existing MSs, the proposed design uniquely combines multiple functionalities, making it a potential alternative to frequency-selective rasorbers and a promising candidate for antennas and communication system applications.

How to cite

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, M. N. E. (2026). A multifunctional bi-anisotropic metasurface with reflection-transmission polarization conversion and narrow bandpass transmission characteristics. https://doi.org/10.1038/s41598-026-44437-0

MLA

al, Muhammad Nasir et. "A multifunctional bi-anisotropic metasurface with reflection-transmission polarization conversion and narrow bandpass transmission characteristics." 2026. https://doi.org/10.1038/s41598-026-44437-0.

Chicago

al, Muhammad Nasir et. 2026. "A multifunctional bi-anisotropic metasurface with reflection-transmission polarization conversion and narrow bandpass transmission characteristics.". https://doi.org/10.1038/s41598-026-44437-0.

Harvard

al, M. N. E. 2026, A multifunctional bi-anisotropic metasurface with reflection-transmission polarization conversion and narrow bandpass transmission characteristics, Nature Portfolio, available at: https://doi.org/10.1038/s41598-026-44437-0 [Accessed 5 Aug. 2026].

Share and print

Save the record, copy its permanent link, or print it as a PDF.

Export reference

You can export the record in common formats for use in a reference manager.

Resource details

Bibliographic information to help confirm that this is the correct material.

Title
A multifunctional bi-anisotropic metasurface with reflection-transmission polarization conversion and narrow bandpass transmission characteristics
Author / contributors
Muhammad Nasir et al
Publisher
Nature Portfolio
Publication year
2026
ISSN
2045-2322
ISSN
2045-2322
Language
English

Subjects

Explore related resources through these subjects.

Copied