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Evanescent waves in optics = an intr...
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Bertolotti, Mario.
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Evanescent waves in optics = an introduction to plasmonics /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Evanescent waves in optics/ by Mario Bertolotti, Concita Sibilia, Angela M. Guzman.
其他題名:
an introduction to plasmonics /
作者:
Bertolotti, Mario.
其他作者:
Sibilia, Concita.
出版者:
Cham :Springer International Publishing : : 2017.,
面頁冊數:
ix, 259 p. :ill., digital ;24 cm.
內容註:
Preface -- Chapter I Basic electromagnetics -- Chapter II Evanescent Waves -- Chapter III Evanescent Waves in Waveguides -- Chapter IV High resolution optical microscopes (in which evanescent waves play a role) -- Chapter V Plasmons -- Chapter VI Applications of plasmons -- Chapter VII Quantization of evanescent waves, surface plasmons and surface plasmon polaritons.
Contained By:
Springer eBooks
標題:
Optics. -
電子資源:
http://dx.doi.org/10.1007/978-3-319-61261-4
ISBN:
9783319612614
Evanescent waves in optics = an introduction to plasmonics /
Bertolotti, Mario.
Evanescent waves in optics
an introduction to plasmonics /[electronic resource] :by Mario Bertolotti, Concita Sibilia, Angela M. Guzman. - Cham :Springer International Publishing :2017. - ix, 259 p. :ill., digital ;24 cm. - Springer series in optical sciences,v.2060342-4111 ;. - Springer series in optical sciences ;v.206..
Preface -- Chapter I Basic electromagnetics -- Chapter II Evanescent Waves -- Chapter III Evanescent Waves in Waveguides -- Chapter IV High resolution optical microscopes (in which evanescent waves play a role) -- Chapter V Plasmons -- Chapter VI Applications of plasmons -- Chapter VII Quantization of evanescent waves, surface plasmons and surface plasmon polaritons.
This monograph provides an introductory discussion of evanescent waves and plasmons, describes their properties and uses, and shows how they are fundamental when operating with nanoscale optics. Far field optics is not suitable for the design, description, and operation of devices at this nanometre scale. Instead one must work with models based on near-field optics and surface evanescent waves. The new discipline of plasmonics has grown to encompass the generation and application of plasmons both as a travelling excitation in a nanostructure and as a stationary enhancement of the electrical field near metal nanosurfaces. The book begins with a brief review of the basic concepts of electromagnetism, then introduces evanescent waves through reflection and refraction, and shows how they appear in diffraction problems, before discussing the role that they play in optical waveguides and sensors. The application of evanescent waves in super-resolution devices is briefly presented, before plasmons are introduced. The surface plasmon polaritons (SPPs) are then treated, highlighting their potential applications also in ultra-compact circuitry. The book concludes with a discussion of the quantization of evanescent waves and quantum information processing. The book is intended for students and researchers who wish to enter the field or to have some insight into the matter. It is not a textbook but simply an introduction to more complete and in-depth discussions. The field of plasmonics has exploded in the last ten years, and most of the material treated in this book is scattered in original or review papers. A short comprehensive treatment is missing; this book is intended to provide just that.
ISBN: 9783319612614
Standard No.: 10.1007/978-3-319-61261-4doiSubjects--Topical Terms:
517925
Optics.
LC Class. No.: QC355.3
Dewey Class. No.: 621.36
Evanescent waves in optics = an introduction to plasmonics /
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Preface -- Chapter I Basic electromagnetics -- Chapter II Evanescent Waves -- Chapter III Evanescent Waves in Waveguides -- Chapter IV High resolution optical microscopes (in which evanescent waves play a role) -- Chapter V Plasmons -- Chapter VI Applications of plasmons -- Chapter VII Quantization of evanescent waves, surface plasmons and surface plasmon polaritons.
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This monograph provides an introductory discussion of evanescent waves and plasmons, describes their properties and uses, and shows how they are fundamental when operating with nanoscale optics. Far field optics is not suitable for the design, description, and operation of devices at this nanometre scale. Instead one must work with models based on near-field optics and surface evanescent waves. The new discipline of plasmonics has grown to encompass the generation and application of plasmons both as a travelling excitation in a nanostructure and as a stationary enhancement of the electrical field near metal nanosurfaces. The book begins with a brief review of the basic concepts of electromagnetism, then introduces evanescent waves through reflection and refraction, and shows how they appear in diffraction problems, before discussing the role that they play in optical waveguides and sensors. The application of evanescent waves in super-resolution devices is briefly presented, before plasmons are introduced. The surface plasmon polaritons (SPPs) are then treated, highlighting their potential applications also in ultra-compact circuitry. The book concludes with a discussion of the quantization of evanescent waves and quantum information processing. The book is intended for students and researchers who wish to enter the field or to have some insight into the matter. It is not a textbook but simply an introduction to more complete and in-depth discussions. The field of plasmonics has exploded in the last ten years, and most of the material treated in this book is scattered in original or review papers. A short comprehensive treatment is missing; this book is intended to provide just that.
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