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Collective photonic response of high refractive index dielectric metasurfaces
ID
Amanaganti, Sushanth Reddy
(
Avtor
),
ID
Ravnik, Miha
(
Avtor
),
ID
Dontabhaktuni, Jayasri
(
Avtor
)
PDF - Predstavitvena datoteka,
prenos
(1,89 MB)
MD5: 74732EEC091B2DAE1736334D3774C0AC
URL - Izvorni URL, za dostop obiščite
https://www.nature.com/articles/s41598-020-72675-3
Galerija slik
Izvleček
Sub-wavelength periodic nanostructures give rise to interesting optical phenomena like efective refractive index, perfect absorption, cloaking, etc. However, such structures are usually metallic which results in high dissipative losses and limitations for use; therefore, dielectric nanostructures are increasingly considered as a strong alternative to plasmonic (metallic) materials. In this work, we show light-matter interaction in a high refractive index dielectric metasurface consisting of an array of cubic dielectric nano-structures made of very high refractive index material, Te in air, using computer modelling. We observe a distinct band-like structure in both transmission and refection spectra resulting from the near-feld coupling of the feld modes from neighboring dielectric structures followed by a sharp peak in the transmission at higher frequencies. From the spatial distribution of the electric and magnetic felds and a detailed multipole analysis in both spherical harmonics and Cartesian components, the dominant resonant modes are identifed to be electric and magnetic dipoles. Specifcally at lower frequency (60 THz) a novel anapole-like state characterized by strong-suppression in refection and absorption is observed, reported very recently as ‘lattice-invisibility’ state. Diferently, at higher frequency (62 THz), strong absorption and near-zero far feld scattering are observed, which combined with the feld profles and the multipole analysis of the near-felds indicate the excitation of an anapole. Notably the observed novel modes occur in the simple geometry of dielectric cubes and are a result of collective response of the metasurfaces. Periodicity of the cubic metasurface is shown as the signifcant material tuning parameter, allowing for the near-feld and far-feld coupling efects of anapole metasurface. More generally, our work is a contribution towards developing far-fetching applications based on metamaterials such as integrated devices and waveguides consisting of non-radiating modes.
Jezik:
Angleški jezik
Ključne besede:
optics
,
photonics
,
metamaterials
,
optical materials
,
optical structures
Vrsta gradiva:
Članek v reviji
Tipologija:
1.01 - Izvirni znanstveni članek
Organizacija:
FMF - Fakulteta za matematiko in fiziko
Status publikacije:
Objavljeno
Različica publikacije:
Objavljena publikacija
Leto izida:
2020
Št. strani:
8 str.
Številčenje:
Vol. 10, art. 15599
PID:
20.500.12556/RUL-144810
UDK:
535
ISSN pri članku:
2045-2322
DOI:
10.1038/s41598-020-72675-3
COBISS.SI-ID:
29884163
Datum objave v RUL:
14.03.2023
Število ogledov:
676
Število prenosov:
251
Metapodatki:
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Objavi na:
Gradivo je del revije
Naslov:
Scientific reports
Skrajšan naslov:
Sci. rep.
Založnik:
Nature Publishing Group
ISSN:
2045-2322
COBISS.SI-ID:
18727432
Licence
Licenca:
CC BY 4.0, Creative Commons Priznanje avtorstva 4.0 Mednarodna
Povezava:
http://creativecommons.org/licenses/by/4.0/deed.sl
Opis:
To je standardna licenca Creative Commons, ki daje uporabnikom največ možnosti za nadaljnjo uporabo dela, pri čemer morajo navesti avtorja.
Sekundarni jezik
Jezik:
Slovenski jezik
Ključne besede:
optika
,
fotonika
,
metamateriali
Projekti
Financer:
Drugi - Drug financer ali več financerjev
Program financ.:
Government of India, DST-SERB EMR (CR)
Številka projekta:
EMR/2017/004045
Financer:
ARRS - Agencija za raziskovalno dejavnost Republike Slovenije
Številka projekta:
P1-0099
Naslov:
Fizika mehkih snovi, površin in nanostruktur
Financer:
ARRS - Agencija za raziskovalno dejavnost Republike Slovenije
Številka projekta:
L1-8135
Naslov:
Biološka zdravila: detektor tvorbe proteinskih delcev na osnovi tekočih kristalov
Financer:
UKRI - UK Research and Innovation
Program financ.:
EPSRC, Isaac Newton Institute for Mathematical Sciences, The mathematical design of new materials
Številka projekta:
EP/R014604/1
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