Replication Data for: Impact of conductivity on Lorentzian and Fano resonant high-Q THz metamaterials: Superconductor, metal and perfect electric conductor (doi:10.21979/N9/AWKV0V)

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Document Description

Citation

Title:

Replication Data for: Impact of conductivity on Lorentzian and Fano resonant high-Q THz metamaterials: Superconductor, metal and perfect electric conductor

Identification Number:

doi:10.21979/N9/AWKV0V

Distributor:

DR-NTU (Data)

Date of Distribution:

2020-05-15

Version:

1

Bibliographic Citation:

Srivastava, Yogesh Kumar; Singh, Ranjan, 2020, "Replication Data for: Impact of conductivity on Lorentzian and Fano resonant high-Q THz metamaterials: Superconductor, metal and perfect electric conductor", https://doi.org/10.21979/N9/AWKV0V, DR-NTU (Data), V1

Study Description

Citation

Title:

Replication Data for: Impact of conductivity on Lorentzian and Fano resonant high-Q THz metamaterials: Superconductor, metal and perfect electric conductor

Identification Number:

doi:10.21979/N9/AWKV0V

Authoring Entity:

Srivastava, Yogesh Kumar (Nanyang Technological University)

Singh, Ranjan (Nanyang Technological University)

Software used in Production:

CST

Software used in Production:

Origin Pro

Grant Number:

NRF2016-NRF-ANR004

Grant Number:

NRF2016-NRF-ANR004

Distributor:

DR-NTU (Data)

Access Authority:

Srivastava, Yogesh Kumar

Access Authority:

Singh, Ranjan

Depositor:

Srivastava, Yogesh Kumar

Date of Deposit:

2020-05-12

Holdings Information:

https://doi.org/10.21979/N9/AWKV0V

Study Scope

Keywords:

Physics, Physics, High Tc superconductor

Abstract:

High temperature superconductors have created exciting opportunities for switchable metamaterial and plasmonic devices operating at terahertz frequencies. In recent times, there have been several demonstrations using superconducting metamaterials, such as thermal, electrical, magnetic, and optical switching. Here, we explore the impact of conductivity on terahertz metamaterial resonators with different resonance line shapes. Lorentzian and Fano line shaped resonators show different levels of enhancement in the quality factor and resonance intensity for metallic, superconductor, and perfect electric conductors, due to the interplay between the radiative and the non-radiative loss mechanisms in a metamaterial array.

Kind of Data:

Research data

Methodology and Processing

Sources Statement

Data Access

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Related Publications

Citation

Identification Number:

10.1063/1.4994951

Bibliographic Citation:

Srivastava, Y. K., & Singh, R. (2017). Impact of conductivity on Lorentzian and Fano resonant high- Q THz metamaterials: Superconductor, metal and perfect electric conductor. Journal of Applied Physics, 122(18), 183104-.

Citation

Identification Number:

10356/86626

Bibliographic Citation:

Srivastava, Y. K., & Singh, R. (2017). Impact of conductivity on Lorentzian and Fano resonant high- Q THz metamaterials: Superconductor, metal and perfect electric conductor. Journal of Applied Physics, 122(18), 183104-.

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