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License Agreement on scientific materials use.
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ELECTROMAGNETIC WAVE AMPLIFICATION IN COMPOSITE STRUCTURES WITH COMPLEX SHAPE INCLUSIONS
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Mariya Vilevna Golovkina
Povolzhskiy State University of Telecommunications and Informatics
Tat'yana Evgen'evna Obukhovich
Povolzhskiy State University of Telecommunications and Informatics
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Submitted:
May 12, 2014
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Abstract.
The paper investigates the spectral characteristics of nanocomposite structure comprising spherical shape inclusions with metal shell. The possibility of controlling plasmon resonance position through changing the radius of nucleus and nanoparticle shell thickness is considered. The features of nanoparticles working in amplification mode are studied. The comparison with the electrodynamic parameters of spherical particles with nanoshell working in SPASER (Surface Plasmon Amplification by Stimulated Emission of Radiation) mode is carried out. The obtained results can be used for creating ultra-fast switches and processors.
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Key words and phrases:
наночастица c оболочкой
плазмонный резонанс
усиление
спазер
нанокомпозитная структура
nanoparticle with shell
plasmon resonance
amplification
SPASER (Surface Plasmon Amplification by Stimulated Emission of Radiation)
nanocomposite structure
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References:
- Климов В. В. Наноплазмоника // Успехи физических наук. 2009. Т. 178. № 8. С. 875-880.
- Сидоров А. И. Инверсия поглощения и рассеяния при плазмонном резонансе в наночастицах с металлической оболочкой // Журнал технической физики. 2006. Т. 76. Вып. 10. С. 136-139.
- Сидоров А. И. Механизм низкопорогового ограничения излучения в компенсированном арсениде галлия // Оптический журнал. 2002. Т. 69. № 1. С. 7-13.
- Сидоров А. И., Виноградова О. П., Бандюк О. В. Особенности нелинейно-оптического отклика композитных сред на основе наноструктур с поглощающим ядром и металлической оболочкой вблизи плазмонного резонанса // Журнал технической физики. 2008. Т. 78. Вып. 6. С. 70-75.
- Bergman D. J., Stockman M. I. Surface Plasmon Amplification by Stimulated Emission of Radiation: Quantum Generation of Coherent Surface Plasmons in Nanosystems // Physical Review Letters. 2003. Vol. 90. P. 027402-1-027402-4.
- Parfenyev M., Vergeles S. S. Intensity-Dependent Frequency Shift in Surface Plasmon Amplification by Stimulated Emission of Radiation // Physical Review A. 2012. Vol. 86. P. 043824-1-043824-10.
- Stockman M. I. Spaser as Nanoscale Quantum Generator and Ultrafast Amplifier // Journal of Optics. 2010. Vol. 12. P. 024004-1-024004-13.
- Stockman M. I. Spasers Explained // Nature Photonics. 2008. Vol. 2. P. 327-329.
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