Enhanced absorption in all-dielectric metasurfaces due to magnetic dipole excitation

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作者
Pavel D. Terekhov
Kseniia V. Baryshnikova
Yakov Greenberg
Yuan Hsing Fu
Andrey B. Evlyukhin
Alexander S. Shalin
Alina Karabchevsky
机构
[1] Ben-Gurion University,Photonics and Electrooptical Engineering Unit
[2] Ben-Gurion University,Ilse Katz Institute for Nanoscale Science & Technology
[3] Ben-Gurion University,Center for Quantum Information Science and Technology
[4] ITMO University,undefined
[5] 49 Kronversky Ave,undefined
[6] Data Storage Institute,undefined
[7] Agency for Science,undefined
[8] Technology and Research (A*STAR),undefined
[9] Moscow Institute of Physics and Technology,undefined
[10] Institute of Quantum Optics,undefined
[11] Leibniz Universität Hannover,undefined
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摘要
All-dielectric nanophotonics lies at a forefront of nanoscience and technology as it allows to control light at the nanoscale using its electric and magnetic components. Bulk silicon does not experience any magnetic response, nevertheless, we demonstrate that the metasurface made of silicon parallelepipeds allows to excite the magnetic dipole moment leading to the broadening and enhancement of the absorption. Our investigations are underpinned by the numerical predictions and the experimental verifications. Also surprisingly we found that the resonant electric quadrupole moment leads to the enhancement of reflection. Our results can be applied for a development of absorption based devices from miniature dielectric absorbers, filters to solar cells and energy harvesting devices.
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