2021
DOI: 10.2528/pier21121903
|View full text |Cite
|
Sign up to set email alerts
|

Wideband High-Reflection Chiral Dielectric Metasurface

Abstract: Compared to natural materials, artificial subwavelength structures can enhance chiroptical effects in a stronger way, and the requirement of low material loss and wideband operation is desired in many situations. Here, we propose an all-dielectric chiral metasurface as a periodic array of centrosymmetric staggered silicon cuboid pairs to achieve strong circular dichroism in a wide band. As a demonstration, the designed chiral metasurface may strongly reflect the chosen circularly polarized light with the spin … Show more

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
4

Citation Types

0
17
0

Year Published

2022
2022
2023
2023

Publication Types

Select...
6

Relationship

1
5

Authors

Journals

citations
Cited by 31 publications
(17 citation statements)
references
References 29 publications
(33 reference statements)
0
17
0
Order By: Relevance
“…Tailoring the wavefront of electromagnetic waves at will has been continuously spurring tremendous interest of researchers ranging from microwave to optics domains, and controlling the amplitude and phase of circular polarized (CP) waves is particularly meaningful, attributed to the unparalleled characteristics and practical applications of CP waves. Remarkably, chiral structures that universally appear in nature lacking any mirror symmetry plane are able to perform diverse responses for left-handed circular polarized (LCP) waves and right-handed circular polarized (RCP) waves and induce various exotic chiroptical phenomena, including optical activity, , circular dichroism, , and so on. However, the chiral effects of natural materials are relatively weak because of the scale mismatch between electromagnetic waves and chiral molecules, which hinders their wide applications in engineering and also encourages researchers to explore the fire-new medium to enhance chiral effects. , Fortunately, the emergence of metasurfaces can effectively solve aforementioned difficulty of natural materials and make conspicuous progress in the design of chiral devices. , …”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…Tailoring the wavefront of electromagnetic waves at will has been continuously spurring tremendous interest of researchers ranging from microwave to optics domains, and controlling the amplitude and phase of circular polarized (CP) waves is particularly meaningful, attributed to the unparalleled characteristics and practical applications of CP waves. Remarkably, chiral structures that universally appear in nature lacking any mirror symmetry plane are able to perform diverse responses for left-handed circular polarized (LCP) waves and right-handed circular polarized (RCP) waves and induce various exotic chiroptical phenomena, including optical activity, , circular dichroism, , and so on. However, the chiral effects of natural materials are relatively weak because of the scale mismatch between electromagnetic waves and chiral molecules, which hinders their wide applications in engineering and also encourages researchers to explore the fire-new medium to enhance chiral effects. , Fortunately, the emergence of metasurfaces can effectively solve aforementioned difficulty of natural materials and make conspicuous progress in the design of chiral devices. , …”
Section: Introductionmentioning
confidence: 99%
“…11−13 However, the chiral effects of natural materials are relatively weak because of the scale mismatch between electromagnetic waves and chiral molecules, which hinders their wide applications in engineering and also encourages researchers to explore the firenew medium to enhance chiral effects. 14,15 Fortunately, the emergence of metasurfaces can effectively solve aforementioned difficulty of natural materials and make conspicuous progress in the design of chiral devices. 16,17 Metasurfaces, the artificial planar arrangements of various subwavelength resonators, possess exceptional capability of tailoring the amplitude, phase, and polarization of electromagnetic waves.…”
Section: ■ Introductionmentioning
confidence: 99%
“…Thus far, we have witnessed fruitful metasurface applications including wave manipulation, anomalous reflection, invisibility cloak, special beam generation, and so on. [16,19,[23][24][25][26][27][28][29][30][31] An important characteristic of metasurfaces is associated with polarization sensitivity whose optical responses are different when the polarization of incident wave changes. [32] This important characteristic provides a new pathway for determining the polarization state with subtle design and a spectrum of works have validated the feasibility of metasurface-based polarization detection.…”
Section: Introductionmentioning
confidence: 99%
“…Chiral media can be classified into natural chiral medium, 14 artificial chiral structures, [15][16][17][18] and effective chiral medium. 19,20 Chiral structures with gain, instead of loss, are called active chiral structures.…”
Section: Introductionmentioning
confidence: 99%
“…4 Wo et al investigated the optical forces induced by a plane wave on two chiral particles coupling with each other via evanescent near fields by using numerical and analytical methods. 12 Nevertheless, further studies on the complex mechanism of optical forces on inhomogeneous chiral structures are necessary.Chiral media can be classified into natural chiral medium, 14 artificial chiral structures, [15][16][17][18] and effective chiral medium. 19,20 Chiral structures with gain, instead of loss, are called active chiral structures.…”
mentioning
confidence: 99%