Fundamental and Practical Limits of Achieving Artificial Magnetism and Effective Optical Medium by Using Self-Assembly of Metallic Colloidal Clusters

Citations

WEB OF SCIENCE

2
Citations

SCOPUS

2

초록

The self-assembly of metallic colloidal clusters (so called plasmonic metamolecules) has been viewed as a versatile, but highly effective approach for the materialization of the metamaterials exhibiting artificial magnetism at optical frequencies (including visible and near infrared (NIR) regimes). Indeed, several proofs of concepts of plasmonic metamolecules have been successfully demonstrated in both theoretical and experimental ways. Nevertheless, this self-assembly strategy has barely been used and still remains an underutilized method. For example, the self-assembly and optical utilization of the plasmonic metamolecules have been limited to the discrete unit of the structure; the materialization of effective optical medium made of plasmonic metamolecules is highly challenging. In this work, we theoretically exploited the practical limits of self-assembly technology for the fabrication of optical magnetic metamaterials.

키워드

colloidsself-assemblyplasmonic metamoleculesmagnetismPLASMONIC RESONANCES
제목
Fundamental and Practical Limits of Achieving Artificial Magnetism and Effective Optical Medium by Using Self-Assembly of Metallic Colloidal Clusters
저자
Kim, KwangjinHuh, Ji-HyeokYu, DoyoungLee, Seungwoo
DOI
10.1007/s13233-018-6154-5
발행일
2018-12
유형
Article
저널명
Macromolecular Research
26
12
페이지
1103 ~ 1107