Broadband absorption of the solar radiation with surface arrays of subwavelength light funnels. (December 2018)
- Record Type:
- Journal Article
- Title:
- Broadband absorption of the solar radiation with surface arrays of subwavelength light funnels. (December 2018)
- Main Title:
- Broadband absorption of the solar radiation with surface arrays of subwavelength light funnels
- Authors:
- Prajapati, Ashish
Nissan, Yuval
Gabay, Tamir
Shalev, Gil - Abstract:
- Abstract: Surface arrays of subwavelength silicon light funnels (LFs) were recently introduced as a promising new avenue towards efficient light trapping and the broadband absorption of the solar radiation. In the current work we use finite-difference time-domain calculations to understand the nature of the optical coupling between silicon LF arrays and underlying silicon substrates. We start by examining the broadband absorption dependency of free-floating LF arrays on the LF bottom diameter, and we show that light trapping at the Yablonovitch limit can be realized by tuning the LF bottom diameter. Next we examine the optical coupling between LF arrays and underlying substrates. We show that the array-substrate complexes exhibit strong absorption peaks at the near infrared. The origin of the absorption peaks is traced to either strong optical excitation of the LF arrays (occupation of Mie modes), strong excitations of the substrates (guided modes, Fabry-Perot and mode hybridization), or excitations of both the arrays and the substrates. Finally, we demonstrate light trapping at the Yablonovitch limit with the LF array-substrate complex. Graphical abstract: Highlights: Broadband absorption of the solar radiation in thin films decorated with surface arrays of subwavelength light funnels. Light trapping at the Yablonovitch limit in free-floating arrays of light funnels due to excitation of Mie modes. We demonstrate efficient optical excitation of the underlying substratesAbstract: Surface arrays of subwavelength silicon light funnels (LFs) were recently introduced as a promising new avenue towards efficient light trapping and the broadband absorption of the solar radiation. In the current work we use finite-difference time-domain calculations to understand the nature of the optical coupling between silicon LF arrays and underlying silicon substrates. We start by examining the broadband absorption dependency of free-floating LF arrays on the LF bottom diameter, and we show that light trapping at the Yablonovitch limit can be realized by tuning the LF bottom diameter. Next we examine the optical coupling between LF arrays and underlying substrates. We show that the array-substrate complexes exhibit strong absorption peaks at the near infrared. The origin of the absorption peaks is traced to either strong optical excitation of the LF arrays (occupation of Mie modes), strong excitations of the substrates (guided modes, Fabry-Perot and mode hybridization), or excitations of both the arrays and the substrates. Finally, we demonstrate light trapping at the Yablonovitch limit with the LF array-substrate complex. Graphical abstract: Highlights: Broadband absorption of the solar radiation in thin films decorated with surface arrays of subwavelength light funnels. Light trapping at the Yablonovitch limit in free-floating arrays of light funnels due to excitation of Mie modes. We demonstrate efficient optical excitation of the underlying substrates using arrays of subwavelength light funnels. We show that the light funnel array-substrate complexes exhibit strong absorption peaks at the near infrared. The absorption peaks are due to excitation of the arrays, excitation of the substrates, or excitations of both. … (more)
- Is Part Of:
- Nano energy. Volume 54(2018)
- Journal:
- Nano energy
- Issue:
- Volume 54(2018)
- Issue Display:
- Volume 54, Issue 2018 (2018)
- Year:
- 2018
- Volume:
- 54
- Issue:
- 2018
- Issue Sort Value:
- 2018-0054-2018-0000
- Page Start:
- 447
- Page End:
- 452
- Publication Date:
- 2018-12
- Subjects:
- Photovoltaic energy -- Light trapping -- Metasurfaces -- Nano photonics -- Broadband absorption
Nanoscience -- Periodicals
Nanotechnology -- Periodicals
Nanostructured materials -- Periodicals
Power resources -- Technological innovations -- Periodicals
Nanoscience
Nanostructured materials
Nanotechnology
Power resources -- Technological innovations
Periodicals
621.042 - Journal URLs:
- http://www.sciencedirect.com/science/journal/22112855 ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.nanoen.2018.10.046 ↗
- Languages:
- English
- ISSNs:
- 2211-2855
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
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- British Library DSC - BLDSS-3PM
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