Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material
Realizing perfect light absorption in stacked thin films of dielectrics and metals through critical light coupling has recently received intensive research attention. In addition, realizing ultra-thin perfect absorber and tunable perfect absorber in the visible spectrum is essential for novel optoel...
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sg-ntu-dr.10356-1622682022-10-11T05:59:43Z Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material Sreekanth, Kandammathe Valiyaveedu Prabhathan, Patinharekandy Chaturvedi, Apoorva Lekina, Yulia Han, Song Zexiang, Shen Teo, Edwin Hang Tong Teng, Jinghua Singh, Ranjan School of Physical and Mathematical Sciences School of Materials Science and Engineering School of Electrical and Electronic Engineering The Photonics Institute Engineering::Electrical and electronic engineering Science::Physics Critical Light Coupling Modulators Realizing perfect light absorption in stacked thin films of dielectrics and metals through critical light coupling has recently received intensive research attention. In addition, realizing ultra-thin perfect absorber and tunable perfect absorber in the visible spectrum is essential for novel optoelectronics applications. However, the existing thin film stacks cannot show tunable perfect absorption in a wide-angle range. Here, a tunable perfect absorption from normal incidence to a wide-angle range (0° to 70°) by utilizing a two-layer stack consisting of a high refractive index low-loss dielectric on a high reflecting metal is proposed. This is experimentally demonstrated by depositing a thin layer of low-loss phase change material such as stibnite (Sb2 S3 ) on a thin layer of silver. This structure shows tunable perfect absorption with large spectral tunability in the visible wavelength. Furthermore, the absorption enhancement in 2D materials by transferring monolayer molybdenum disulfide on the stack, which shows 96% light absorption with enhanced photoluminescence, is demonstrated. In addition, the thin film stack can work as a scalable phase modulator offering a maximum phase tunability of ≈140° by changing the structural state of Sb2 S3 from amorphous to crystalline. Agency for Science, Technology and Research (A*STAR) P.P. and R.S. acknowledge the funding support from Advanced Manufacturing and Engineering (AME) Programmatic grant (A18A5b0056) by Agency for Science, Technology, and Research (A*STAR). K.V.S. and J.T. acknowledge A*STAR for funding support in Grant Nos. H19H6a0025, A20E5c0084, A2083c0058 and CRF SC25/21-110318. 2022-10-11T05:59:43Z 2022-10-11T05:59:43Z 2022 Journal Article Sreekanth, K. V., Prabhathan, P., Chaturvedi, A., Lekina, Y., Han, S., Zexiang, S., Teo, E. H. T., Teng, J. & Singh, R. (2022). Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material. Small, 18(28), e2202005-. https://dx.doi.org/10.1002/smll.202202005 1613-6810 https://hdl.handle.net/10356/162268 10.1002/smll.202202005 35714298 2-s2.0-85132030540 28 18 e2202005 en A18A5b0056 Small © 2022 Wiley-VCH GmbH. All rights reserved. |
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Engineering::Electrical and electronic engineering Science::Physics Critical Light Coupling Modulators Sreekanth, Kandammathe Valiyaveedu Prabhathan, Patinharekandy Chaturvedi, Apoorva Lekina, Yulia Han, Song Zexiang, Shen Teo, Edwin Hang Tong Teng, Jinghua Singh, Ranjan Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material |
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Realizing perfect light absorption in stacked thin films of dielectrics and metals through critical light coupling has recently received intensive research attention. In addition, realizing ultra-thin perfect absorber and tunable perfect absorber in the visible spectrum is essential for novel optoelectronics applications. However, the existing thin film stacks cannot show tunable perfect absorption in a wide-angle range. Here, a tunable perfect absorption from normal incidence to a wide-angle range (0° to 70°) by utilizing a two-layer stack consisting of a high refractive index low-loss dielectric on a high reflecting metal is proposed. This is experimentally demonstrated by depositing a thin layer of low-loss phase change material such as stibnite (Sb2 S3 ) on a thin layer of silver. This structure shows tunable perfect absorption with large spectral tunability in the visible wavelength. Furthermore, the absorption enhancement in 2D materials by transferring monolayer molybdenum disulfide on the stack, which shows 96% light absorption with enhanced photoluminescence, is demonstrated. In addition, the thin film stack can work as a scalable phase modulator offering a maximum phase tunability of ≈140° by changing the structural state of Sb2 S3 from amorphous to crystalline. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Sreekanth, Kandammathe Valiyaveedu Prabhathan, Patinharekandy Chaturvedi, Apoorva Lekina, Yulia Han, Song Zexiang, Shen Teo, Edwin Hang Tong Teng, Jinghua Singh, Ranjan |
format |
Article |
author |
Sreekanth, Kandammathe Valiyaveedu Prabhathan, Patinharekandy Chaturvedi, Apoorva Lekina, Yulia Han, Song Zexiang, Shen Teo, Edwin Hang Tong Teng, Jinghua Singh, Ranjan |
author_sort |
Sreekanth, Kandammathe Valiyaveedu |
title |
Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material |
title_short |
Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material |
title_full |
Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material |
title_fullStr |
Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material |
title_full_unstemmed |
Wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material |
title_sort |
wide-angle tunable critical coupling in nanophotonic optical coatings with low-loss phase change material |
publishDate |
2022 |
url |
https://hdl.handle.net/10356/162268 |
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1749179185856774144 |