Magnetic Purcell Enhancement by Magnetic Quadrupole Resonance of Dielectric Nanosphere Antenna
Магнитное усиление Пёрселла за счёт магнитного квадрупольного резонанса диэлектрической наноантенны на основе наношара
2021-05-17
SCID: 54.1/jm2mfhgc
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Eu3+ complexesdielectric nanosphere antennamagnetic Purcell enhancementmagnetic dipole emissionmagnetic quadrupole resonance
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Abstract (AI)
Dielectric nanoantennas have been suggested for manipulating the spontaneous emission of a magnetic dipole through the magnetic Purcell effect. However, the experimentally observed enhancement of the magnetic dipole emission has been marginal and much smaller than the theoretical prediction. Here, we develop a composite system, that is, a Si nanosphere decorated with Eu 3+ complexes, in which magnetic dipole emission of Eu 3+ is efficiently coupled to the magnetic Mie modes of the nanosphere. By means of single particle spectroscopy, we systematically investigate the light scattering and photoluminescence spectra of the coupled system with diameters of Si nanospheres from 130 to 245 nm. We demonstrate that, by tuning the magnetic quadrupole Mie resonance to the 5 D 0 – 7 F 1 magnetic dipole transition of Eu 3+, the branching ratio between the magnetic and electric dipole transitions is enhanced up to 7×. We also show the magnetic Purcell enhancement in an ensemble of Si nanospheres with size distribution.
Key Findings
1
A composite Si nanosphere–Eu3+ system efficiently couples Eu3+ magnetic-dipole emission to magnetic Mie resonances.
2
Single-particle spectroscopy systematically characterizes scattering and photoluminescence for Si nanospheres with diameters from 130 to 245 nm.
3
The approach addresses the previously marginal experimental enhancement of magnetic-dipole emission from dielectric nanoantennas.
4
The study demonstrates magnetic Purcell enhancement in an ensemble of Si nanospheres despite their size distribution.
5
Tuning the nanosphere’s magnetic quadrupole resonance to the Eu3+ 5D0–7F1 magnetic-dipole transition enhances the magnetic-to-electric dipole branching ratio by up to 7×.
Research Object
Si nanospheres decorated with Eu3+ complexes
Research Subject
Magnetic Purcell enhancement and branching-ratio modification of Eu3+ magnetic-dipole emission through coupling to magnetic Mie modes, particularly the magnetic quadrupole resonance
Publication Details
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2021-05-17
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