Dataset for "A general model for taper coupling of multiple modes of whispering gallery resonators and application to analysis of coupling-induced Fano interference in a single cavity"
Dataset for "A general model for taper coupling of multiple modes of whispering gallery resonators and application to analysis of coupling-induced Fano interference in a single cavity"
This dataset supports the publication:
Bakhtiari Gorajoobi, Shahab et al (2019). A general model for taper coupling of multiple modes of whispering gallery resonators and application to analysis of coupling-induced Fano interference in a single cavity. Optics Express.
Data of all figures are given in excel files, and labeled according to the content of the article. Please refer to the README.txt file for detailed description of the dataset.
University of Southampton
Bakhtiari Gorajoobi, Shahab
ba37e5f9-6a5e-4beb-82eb-b932613fba55
Senthil Murugan, Ganapathy
a867686e-0535-46cc-ad85-c2342086b25b
Zervas, Michael
1840a474-dd50-4a55-ab74-6f086aa3f701
Bakhtiari Gorajoobi, Shahab
ba37e5f9-6a5e-4beb-82eb-b932613fba55
Senthil Murugan, Ganapathy
a867686e-0535-46cc-ad85-c2342086b25b
Zervas, Michael
1840a474-dd50-4a55-ab74-6f086aa3f701
Bakhtiari Gorajoobi, Shahab, Senthil Murugan, Ganapathy and Zervas, Michael
(2019)
Dataset for "A general model for taper coupling of multiple modes of whispering gallery resonators and application to analysis of coupling-induced Fano interference in a single cavity".
University of Southampton
doi:10.5258/SOTON/D1037
[Dataset]
Abstract
This dataset supports the publication:
Bakhtiari Gorajoobi, Shahab et al (2019). A general model for taper coupling of multiple modes of whispering gallery resonators and application to analysis of coupling-induced Fano interference in a single cavity. Optics Express.
Data of all figures are given in excel files, and labeled according to the content of the article. Please refer to the README.txt file for detailed description of the dataset.
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Fig2_Gap000nm_Transmission.xlsx
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Fig2_Gap000nm_Power.xlsx
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Fig2_Gap000nm_Phase.xlsx
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Fig2_Gap200nm_Phase.xlsx
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Fig2_Gap200nm_Power.xlsx
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Fig2_Gap200nm_Transmission.xlsx
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Fig2_Gap400nm_Phase.xlsx
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Fig2_Gap400nm_Transmission.xlsx
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Fig2_Gap400nm_Power.xlsx
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Fig2_Gap600nm_Phase.xlsx
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Fig2_Gap600nm_Power.xlsx
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Fig2_Gap600nm_Transmission.xlsx
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Fig3_Phase_dashed_Lines_Individual_Modes.xlsx
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Fig3_Phase_solid_Lines_Coupled_Modes.xlsx
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Fig3_Power_dashed_Lines_Individual_Modes.xlsx
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Fig3_Power_solid_Lines_Coupled_Modes.xlsx
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Fig3_Transmission_dashed_Lines_Individual_Modes.xlsx
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Fig3_Transmission_solid_Lines_Coupled_Modes.xlsx
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Fig4_Q1E6_Power.xlsx
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Fig4_Q1E6_Transmission.xlsx
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Fig4_Q1E7_Power.xlsx
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Fig4_Q1E7_Transmission.xlsx
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Fig4_Q1E8_Power.xlsx
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Fig4_Q1E8_Transmission.xlsx
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Fig4_Q5E4_Power.xlsx
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Fig4_Q5E4_Transmission.xlsx
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Fig4_Q5E5_Power.xlsx
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Fig4_Q5E5_Transmission.xlsx
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Fig5_Df_1_2um_Power.xlsx
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Fig5_Df_1_2um_Transmission.xlsx
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Fig5_Df_2_8um_Transmission.xlsx
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Fig5_Df_2_8um_Power.xlsx
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Fig5_Df_3_6um_Power.xlsx
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Fig5_Df_3_6um_Transmission.xlsx
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Fig5_Df_5_2um_Transmission.xlsx
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Fig5_Df_5_2um_Power.xlsx
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Fig5_Df_9_2um_Transmission.xlsx
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Fig5_Df_9_2um_Power.xlsx
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Fig6_a_E0_0Percent_Phase.xlsx
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Fig6_a_E0_0Percent_Power.xlsx
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Fig6_a_E0_0Percent_Transmission.xlsx
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Fig6_a_E0_2Percent_Phase.xlsx
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Fig6_a_E0_2Percent_Power.xlsx
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Fig6_a_E0_2Percent_Transmission.xlsx
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Fig6_a_E0_5Percent_Phase.xlsx
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Fig6_a_E0_5Percent_Power.xlsx
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Fig6_a_E0_5Percent_Transmission.xlsx
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Fig6_a_E2_0Percent_Power.xlsx
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Fig6_a_E2_0Percent_Phase.xlsx
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Fig6_a_E2_0Percent_Transmission.xlsx
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Fig6_b_E0_0Percent_All_Qs.xlsx
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Fig6_b_E0_2Percent_All_Qs.xlsx
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Show all 53 downloads.
More information
Published date: 6 August 2019
Identifiers
Local EPrints ID: 433095
URI: http://eprints.soton.ac.uk/id/eprint/433095
PURE UUID: 3847af6e-594a-42a6-a5d9-3d18eccde761
Catalogue record
Date deposited: 07 Aug 2019 16:31
Last modified: 06 May 2023 01:41
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Contributors
Creator:
Shahab Bakhtiari Gorajoobi
Creator:
Ganapathy Senthil Murugan
Creator:
Michael Zervas
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