Optical chiral metamaterials: a review of the fundamentals, fabrication methods and applications
Оптические хиральные метаматериалы: обзор фундаментальных положений, методов изготовления и приложений
2016-09-08
SCID: 54.1/hcd7s497
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chiroptical responselinear and nonlinear chiral fieldsnanofabrication approachesoptical chiral metamaterialsplasmonic resonances
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Abstract (AI)
Optical chiral metamaterials have recently attracted considerable attention because they offer new and exciting opportunities for fundamental research and practical applications. Through pragmatic designs, the chiroptical response of chiral metamaterials can be several orders of magnitude higher than that of natural chiral materials. Meanwhile, the local chiral fields can be enhanced by plasmonic resonances to drive a wide range of physical and chemical processes in both linear and nonlinear regimes. In this review, we will discuss the fundamental principles of chiral metamaterials, various optical chiral metamaterials realized by different nanofabrication approaches, and the applications and future prospects of this emerging field.
Key Findings
1
Chiral metamaterials can produce chiroptical responses several orders of magnitude stronger than natural chiral materials through pragmatic design.
2
Optical chiral metamaterials open new opportunities for both fundamental research and practical applications due to their enhanced chiroptical properties.
3
Plasmonic resonances in chiral metamaterials significantly enhance local chiral fields, enabling manipulation of linear and nonlinear physical and chemical processes.
4
The review summarizes fundamental principles, multiple nanofabrication approaches for optical chiral metamaterials, and their applications and future prospects.
Research Object
Optical chiral metamaterials
Research Subject
Their chiroptical fundamentals, nanofabrication methods, enhanced local chiral fields via plasmonic resonances, and related applications in linear and nonlinear regimes
Publication Details
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2016-09-08
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