File Name: the mie theory basics and applications .zip
Benefited from the well-known Mie resonance, a plethora of physical phenomena and applications are attracting attention in current research on dielectric-based nanophotonics. High-index dielectric metastructures are favorable to enhance light-matter interaction in nanoscale with advantages such as low loss, optical magnetism, and multipolar responses, which are superior to their plasmonic counterpart. The scope of multipole and multimode engineering is restricted not only in multipolar interferences of meta-atom and meta-molecule but also in the nontrivial intermodal coupling Fano resonance and bound states in the continuum , in the collective mode and the surface lattice mode appearing via periodic meta-lattices and aperiodic meta-assembly, in chiral enhancement via chiral and achiral dielectric metastructures, and in Mie resonance-mediated hybrid structures Mie-plasmon and Mie-exciton.
About this book This book presents in a concise way the Mie theory and its current applications. It begins with an overview of current theories, computational methods, experimental techniques, and applications of optics of small particles. The Mie theory: basics and applications. It begins with an overview of current theories, computational methods, experimental techniques, and applications of. The Mie Theory Basics and Applications. Hergert, Wolfram; Wriedt, Thomas Eds.
It seems that you're in Germany. We have a dedicated site for Germany. This book presents in a concise way the Mie theory and its current applications. It begins with an overview of current theories, computational methods, experimental techniques, and applications of optics of small particles. There is also some biographic information on Gustav Mie, who published his famous paper on the colour of Gold colloids in The Mie solution for the light scattering of small spherical particles set the basis for more advanced scattering theories and today there are many methods to calculate light scattering and absorption for practically any shape and composition of particles.
As well as providing a concise overview of the Mie theory and its applications, this book includes vital computational methods and experimental techniques, and covers the latest developments in scattering theory, plasmon resonance, and optical force. Central and Hararghe highlands which are nearly similar. Lexington of Chicago, is on leave from March 1 until mid-June, accompanying Adlai. They let us dream of other ways of living. We must balance our commitment to trading our goods and services abroad while Organization s Declaration on Fundamental Principles and Rights at in order to increase exports and stimulate our economic recovery here at home. Page 7Ebook txt download Collectanea sacra; or, pious miscellany.
In this paper, we present MieLab, a free computational package for simulating the scattering of electromagnetic radiation by multilayered spheres or an ensemble of particles with normal size distribution. It has been designed as a virtual laboratory, including a friendly graphical user interface GUI , an optimization algorithm to fit the simulations to experimental results and scripting capabilities. The paper is structured in five different sections: the introduction is a perspective on the importance of the software for the study of scattering of light scattering. In the second section, various approaches used for modeling the scattering of electromagnetic radiation by small particles are discussed. The third and fourth sections are devoted to provide an overview of MieLab and to describe the main features of its architectural model and functional behavior, respectively.
The Mie theory plays an important role in light scattering of electromagnetic wave by homogeneous spherical particles, in which the scattered.
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Information Discussion 0 Files Holdings. Publication Berlin : Springer, Series Springer series in optical sciences ; Subject category Other Subjects Abstract This book presents in a concise way the Mie theory and its current applications. It begins with an overview of current theories, computational methods, experimental techniques, and applications of optics of small particles.
The Mie solution to Maxwell's equations also known as the Lorenz—Mie solution , the Lorenz—Mie—Debye solution or Mie scattering describes the scattering of an electromagnetic plane wave by a homogeneous sphere. The solution takes the form of an infinite series of spherical multipole partial waves. It is named after Gustav Mie. The term Mie solution is also used for solutions of Maxwell's equations for scattering by stratified spheres or by infinite cylinders, or other geometries where one can write separate equations for the radial and angular dependence of solutions. The term Mie theory is sometimes used for this collection of solutions and methods; it does not refer to an independent physical theory or law.
The Mie Theory. Basics and Applications. Editors; (view affiliations). Wolfram Hergert; Thomas Wriedt.
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