Terahertz dual-mechanism dual-band linear-to-circular polarization converter with one-octave band separation and orthogonal polarization
Терагерцевый двухмеханизмный двухдиапазонный преобразователь линейной поляризации в круговую с разнесением диапазонов на одну октаву и ортогональной поляризацией
2025-03-17
SCID: 54.1/55s4zy9n
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dual-mechanism metal-dielectric structuredual-wideband operationlinear-to-circular polarization conversionorthogonal circular polarizationterahertz polarization converter
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Abstract (AI)
Multi-band polarization converters are crucial for reducing coupling between multiple-input multiple-output antenna components, promoting the integration of communication systems, and improving information transmission efficiency. However, current research faces challenges such as narrow operational bandwidth, low conversion efficiency, and lack of correlation between frequency bands for multi-band operation. A dual-wideband linear-to-circular (LC) polarization converter (PC) based on the dual mechanism of metal and dielectric is proposed in this paper. The unit cell of LC PC is optimized through three steps from a conventional metal-dielectric-metal structure. The optimization primarily involves creating cavities with special structures in the dielectric, which introduces the mechanism of dielectric resonance in addition to the original metal resonance. Simulation results demonstrate that this LC PC can convert incident linearly polarized waves into orthogonal circularly polarized waves in two nonadjacent frequency bands. The upper and lower cutoff frequencies of the second frequency band are exactly twice those of the first. The first operating frequency band ranges from 0.645 to 0.865 THz, with a relative bandwidth of 29%, producing a right-handed circularly polarized wave. The second operating frequency band is 1.29-1.73 THz, with a relative bandwidth of 29%, and the circularly polarized wave is left-handed. The device's capability to achieve LC polarization conversion with frequency-doubling relationship and orthogonal circular polarization makes it promising for applications in advanced high-speed communications, signal encryption, quantum information technology, and differential detection of chiral molecules.
Key Findings
1
A dual-wideband linear-to-circular polarization converter combines metal and dielectric resonance mechanisms within an optimized metal-dielectric-metal unit cell.
2
Structured cavities introduced into the dielectric generate dielectric resonance alongside the original metal resonance, enabling dual-band operation.
3
The converter operates from 0.645–0.865 THz and 1.29–1.73 THz, with each band providing 29% relative bandwidth.
4
The device produces right-handed circular polarization in the lower band and orthogonal left-handed circular polarization in the upper band.
5
The second band’s cutoff frequencies are exactly twice those of the first, establishing a one-octave frequency-doubling relationship.
Research Object
Terahertz dual-mechanism dual-band linear-to-circular polarization converter based on a metal-dielectric-metal unit cell
Research Subject
Dual-band polarization-conversion performance, including frequency-doubling band separation, orthogonal handedness of circular polarization, and conversion bandwidth
Publication Details
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2025-03-17
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