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Photonic Crystals: Innovative Systems, Lasers and Waveguides

PUBLISHER Intechopen (03/30/2012)
PRODUCT TYPE Hardcover (Hardcover)

Description
The second volume of the book concerns the characterization approach of photonic crystals, photonic crystal lasers, photonic crystal waveguides and plasmonics including the introduction of innovative systems and materials. Photonic crystal materials promises to enable all-optical computer circuits and could also be used to make ultra low-power light sources. Researchers have studied lasers from microscopic cavities in photonic crystals that act as reflectors to intensify the collisions between photons and atoms that lead to lazing, but these lasers have been optically-pumped, meaning they are driven by other lasers. Moreover, the physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well as their practical limitations, are discussed. This includes the nature of slow light propagation, its bandwidth limitation, coupling of modes and particular kind terminating photonic crystals with metal surfaces allowing to propagate in surface plasmon-polariton waves. The goal of the second volume is to provide an overview about the listed issues.
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Product Format
Product Details
ISBN-13: 9789535104162
ISBN-10: 9535104160
Binding: Hardback or Cased Book (Sewn)
Content Language: English
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Page Count: 362
Carton Quantity: 20
Product Dimensions: 6.69 x 0.81 x 9.61 inches
Weight: 1.71 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Technology & Engineering | Electronics - Optoelectronics
Descriptions, Reviews, Etc.
publisher marketing
The second volume of the book concerns the characterization approach of photonic crystals, photonic crystal lasers, photonic crystal waveguides and plasmonics including the introduction of innovative systems and materials. Photonic crystal materials promises to enable all-optical computer circuits and could also be used to make ultra low-power light sources. Researchers have studied lasers from microscopic cavities in photonic crystals that act as reflectors to intensify the collisions between photons and atoms that lead to lazing, but these lasers have been optically-pumped, meaning they are driven by other lasers. Moreover, the physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well as their practical limitations, are discussed. This includes the nature of slow light propagation, its bandwidth limitation, coupling of modes and particular kind terminating photonic crystals with metal surfaces allowing to propagate in surface plasmon-polariton waves. The goal of the second volume is to provide an overview about the listed issues.
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List Price $179.00
Your Price  $177.21
Hardcover