Replication Data for: Accessing the High‐Q Dark Plasmonic Fano Resonances in Superconductor Metasurfaces (doi:10.21979/N9/CURM5C)

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Document Description

Citation

Title:

Replication Data for: Accessing the High‐Q Dark Plasmonic Fano Resonances in Superconductor Metasurfaces

Identification Number:

doi:10.21979/N9/CURM5C

Distributor:

DR-NTU (Data)

Date of Distribution:

2021-03-03

Version:

1

Bibliographic Citation:

Srivastava, Yogesh Kumar; Manjappa, Manukumara; Krishnamoorthy, Harish N. S.; Singh, Ranjan, 2021, "Replication Data for: Accessing the High‐Q Dark Plasmonic Fano Resonances in Superconductor Metasurfaces", https://doi.org/10.21979/N9/CURM5C, DR-NTU (Data), V1

Study Description

Citation

Title:

Replication Data for: Accessing the High‐Q Dark Plasmonic Fano Resonances in Superconductor Metasurfaces

Identification Number:

doi:10.21979/N9/CURM5C

Authoring Entity:

Srivastava, Yogesh Kumar (Nanyang Technological University)

Manjappa, Manukumara (Nanyang Technological University)

Krishnamoorthy, Harish N. S. (Nanyang Technological University)

Singh, Ranjan (Nanyang Technological University)

Software used in Production:

CST

Software used in Production:

Origin Pro

Grant Number:

MOE2015‐T2‐2‐103

Grant Number:

MOE2011‐T3‐1‐005

Grant Number:

M4011362

Grant Number:

M4011534

Grant Number:

M4081282

Distributor:

DR-NTU (Data)

Access Authority:

Srivastava, Yogesh Kumar

Access Authority:

Singh, Ranjan

Depositor:

Yogesh Kumar Srivastava

Date of Deposit:

2020-05-15

Holdings Information:

https://doi.org/10.21979/N9/CURM5C

Study Scope

Keywords:

Physics, Physics, Terahertz metamaterials, Fano resonance phenomena, high temperature superconductor, high-Q resonance

Abstract:

Superconducting metamaterials at terahertz frequencies has provided a platform for designing switchable plasmonic metamaterial devices. However, since metals at terahertz frequencies are excellent conductors, the superior role of superconductors in designing low‐loss, high quality factor metamaterials remains unclear. In this work, a low asymmetry Fano resonant split‐ring‐resonator is considered in which a regime of extremely low radiative loss is identified where the high temperature yttrium barium copper oxide superconductor meta‐atom supports a sharp high quality factor Fano resonance while an identical metallic resonator does not show the resonance behavior. The radiative and the nonradiative losses are comparable in low asymmetry Fano resonant meta‐atoms. The observation of high quality factor Fano resonance behavior clearly establishes the utility of superconductors over metals in designing lower loss plasmonic metamaterials at terahertz frequencies that may have multifunctional applications in areas that require strong light–matter interactions.

Kind of Data:

Research data

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Identification Number:

10.1002/adom.201600354

Bibliographic Citation:

Srivastava, Y. K., Manjappa, M., Krishnamoorthy, H. N. S., & Singh, R. (2016). Accessing the High-Q Dark Plasmonic Fano Resonances in Superconductor Metasurfaces. Advanced Optical Materials, 4(11), 1875-1881.

Citation

Identification Number:

10356/85839

Bibliographic Citation:

Srivastava, Y. K., Manjappa, M., Krishnamoorthy, H. N. S., & Singh, R. (2016). Accessing the High-Q Dark Plasmonic Fano Resonances in Superconductor Metasurfaces. Advanced Optical Materials, 4(11), 1875-1881.

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