Каталог / Фізико-математичні науки / Оптика, лазерна фізика
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- Назва:
- Плазмонные наноструктуры для оптических метаматериалов Драчев Владимир Прокопьевич
- Альтернативное название:
- Plasmonic Nanostructures for Optical Metamaterials Vladimir Prokopyevich Drachev
- ВНЗ:
- Национальный исследовательский университет «Высшая школа экономики
- Короткий опис:
- Драчев, Владимир Прокопьевич.
Плазмонные наноструктуры для оптических метаматериалов = Plasmonic nanostructures for optical metamaterials : Plasmonic nanostructures for optical metamaterials : диссертация ... доктора физико-математических наук : 01.04.05 / Драчев Владимир Прокопьевич; [Место защиты: ФГАОУ ВО «Национальный исследовательский университет «Высшая школа экономики»]. - Москва, 2021. - 147 с. : ил.
Оглавление диссертациидоктор наук Драчев Владимир Прокопьевич
Contents
INTRODUCTION
I. Dielectric function of noble metals in plasmonic nanostructures
1.1 The Ag Dielectric Function in Plasmonic Metamaterials
1.2 Drude Relaxation Rate in Grained Gold Nanoantennae
12.1 Introduction
12.2 Experiment Methods
12.3 Results and Discussion
12.4 Discussion and Conclusions
1.3 Size dependent x(3) for conduction electrons in Ag nanoparticles 35 II. New mechanism of plasmons specific for spin-polarized nanoparticles 43 II.1 Introduction 43 II. 2 Results
11.3 Discussion
11.4 Methods
11.5 Supporting Information
115.1 Magnetic properties of Co nanoparticles
115.2 Dynamic light scattering
115.3 Structural characterization
115.4 Long-term variations of absorption spectra
115.5 Absorption cross-section spectra of Co nanoparticles in comparison with Au and Ag nanoparticles
III. Optical metamaterials with magnetism and negative refractive index
III. Introduction
III.1 Experimental verification of optical negative index materials at 1.5 |im
1111.2 Fabrication of test samples
1111.3 Experiments and refractive index retrieval
1111.4 Simulations
1111.5 Results and discussions
1111.6 Conclusions
III.2 Metamagnetics using grating and NIMs using cross-gratings
ffl.3 Negative Index Metamaterials based on cross-gratings
III. 3.1 Conclusions
III.4 Optical Negative Index Metamaterials with compensated Losses
IV. Sub-wavelength Patterning in a Hyperbolic Metamaterials by Volume Plasmon Polaritons
IV. 1 Introduction
IV.2 Volume plasmon polaritons in a hyperbolic medium
IV.3 Experimental demonstration of sub-wavelength interference in a hyperbolic medium
104
IV.4 Summary
V. Scattering Suppression by Epsilon-Near-Zero Plasmonic Fractal Sh e l l s
V.1 Introduction
V.2 Results and Discussion
V.3 Methods
V.4 Conclusions
120
Conclusive summary and defended provisions
124
Publications and approbations
131
References Introduction
References Chapter I
References Chapter II
References Chapter III
References Chapter IV
References Chapter V
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