Dataset in support of the journal article 'Flexible thin film optical solar reflectors with Ta2O5-based multimaterial coatings for space radiative cooling'
Dataset in support of the journal article 'Flexible thin film optical solar reflectors with Ta2O5-based multimaterial coatings for space radiative cooling'
Dataset supporting the article published in APL Photonics
Dataset consists of a single excel file with spreadsheet for each subfigure/figure with following formats
Main manuscript
Figure 1:
Figure 1a: no associated data.
Figure 1b: no associated data.
Figure 1c: Sheet Figure 1c Wavelength (Row 1) vs imaginary refractive index(k) for SiN (Row 2), SiO2 (Row 3), Ta2O5 (Row 4), TiO2 (Row 5) and Al2O3 (Row 6).
Figure 2: no associated data.
Figure 3:
Figure 3a: no associated data.
Figure 3b_top: Sheet Figure 3b Wavelength (um) (Row 1) vs absorption for Al (Row 2), S (Row 3) and T (Row 4).
Figure 3b_bottom: Sheet Figure 3b Wavelength (um) (Row 1) vs absorption for S (Row 2) and T (Row 3).
Figure 3c: Sheet Figure 3c Wavelength(um) (Row 1) vs Absorption of each layer, layer1-19 from top to bottom, at Row 2-20, respectively.
Figure 4:
Figure 4a: no associated data.
Figure 4b: no associated data.
Figure 4c: Sheet Figure 4c Wavelength (um) (Row 1/3) vs absorption for S (Row 2) and T (Row 4).
Figure 5:
Figure 5a: Sheet Figure 5a Wavelength (um) (Row 1) vs absorption at different angles (20 dec to 70 dec)for S and T, at Row 2-7.
Figure 5b: Sheet Figure 5b Incidence angle (Rom 1), Epsilon_sim (Row 2), Epsilon 8-13um (Row 3), Alpha Sim (Row 4), Epsilon exp (Row 5) and Epislon exp 8-13um (Row 6).
Figure 5c: Sheet Figure 5c Wavelength (um) (Row 1) vs absorption at different angles (20 dec to 70 dec)for S and T, at Row 2-7.
Figure 5d: Sheet Figure 5d Incidence angle (Rom 1), Epsilon_sim (Row 2), Alpha_sim (Row 3), Epsilon exp (Row 4).
University of Southampton
Muskens, Otto
2284101a-f9ef-4d79-8951-a6cda5bfc7f9
Muskens, Otto
2284101a-f9ef-4d79-8951-a6cda5bfc7f9
Muskens, Otto
(2023)
Dataset in support of the journal article 'Flexible thin film optical solar reflectors with Ta2O5-based multimaterial coatings for space radiative cooling'.
University of Southampton
doi:10.5258/SOTON/D2602
[Dataset]
Abstract
Dataset supporting the article published in APL Photonics
Dataset consists of a single excel file with spreadsheet for each subfigure/figure with following formats
Main manuscript
Figure 1:
Figure 1a: no associated data.
Figure 1b: no associated data.
Figure 1c: Sheet Figure 1c Wavelength (Row 1) vs imaginary refractive index(k) for SiN (Row 2), SiO2 (Row 3), Ta2O5 (Row 4), TiO2 (Row 5) and Al2O3 (Row 6).
Figure 2: no associated data.
Figure 3:
Figure 3a: no associated data.
Figure 3b_top: Sheet Figure 3b Wavelength (um) (Row 1) vs absorption for Al (Row 2), S (Row 3) and T (Row 4).
Figure 3b_bottom: Sheet Figure 3b Wavelength (um) (Row 1) vs absorption for S (Row 2) and T (Row 3).
Figure 3c: Sheet Figure 3c Wavelength(um) (Row 1) vs Absorption of each layer, layer1-19 from top to bottom, at Row 2-20, respectively.
Figure 4:
Figure 4a: no associated data.
Figure 4b: no associated data.
Figure 4c: Sheet Figure 4c Wavelength (um) (Row 1/3) vs absorption for S (Row 2) and T (Row 4).
Figure 5:
Figure 5a: Sheet Figure 5a Wavelength (um) (Row 1) vs absorption at different angles (20 dec to 70 dec)for S and T, at Row 2-7.
Figure 5b: Sheet Figure 5b Incidence angle (Rom 1), Epsilon_sim (Row 2), Epsilon 8-13um (Row 3), Alpha Sim (Row 4), Epsilon exp (Row 5) and Epislon exp 8-13um (Row 6).
Figure 5c: Sheet Figure 5c Wavelength (um) (Row 1) vs absorption at different angles (20 dec to 70 dec)for S and T, at Row 2-7.
Figure 5d: Sheet Figure 5d Incidence angle (Rom 1), Epsilon_sim (Row 2), Alpha_sim (Row 3), Epsilon exp (Row 4).
Text
README_Muskens.txt
- Text
Spreadsheet
Dataset.xlsx
- Dataset
More information
Published date: 27 September 2023
Identifiers
Local EPrints ID: 482364
URI: http://eprints.soton.ac.uk/id/eprint/482364
PURE UUID: 56f87fa6-946a-40f8-906d-d5f26949c9e0
Catalogue record
Date deposited: 28 Sep 2023 16:35
Last modified: 29 Sep 2023 01:40
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