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Attosecond Matter Tomography
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Authors: Janina Marciak-Kozlowska (Institute of Electron Technology, Warsaw, Poland) Miroslaw Kozlowski (Warsaw University, Warsaw, Poland) 
Book Description:
Recent developments in the ultra-short laser technology and physics, especially at the attosecond time scale, open up new research frontiers for attoscience. This new book examines the theoretical model for attophysics. The interaction of the attosecond laser pulses with slices of matter–attosecond tomography enables the description of the motion of electrons in atoms, molecules and 1D medium-graphene. The standard theory of the laser pulse-matter interaction is based on the parabolic Schrodinger equation, which leads to unphysical, infinite velocity of the thermal energy propagation. In this book, the Schrodinger equation is generalized to hyperbolic partial differential equation with finite velocity. (Imprint: Novinka Books)

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Table of Contents:
Introduction;pp. 1-3

Chapter 1. Quantum description of the ultra–fast electromagnetic field accumulation in the matter;pp. 5-15

Chapter 2. Theoretical methods of the attosecond tomography;pp. 17-49

Chapter 3. Schrodinger-Newton hyperbolic equation for matter tomography;pp. 51-105

Chapter 4. Graphene as a bridge between solid state physics and QED;pp. 107-118

Chapter 5. Experimental attosecond tomography;pp. 119-123

Appendix - Generalized Maxwell–Proca equation for heavy photons;pp. 125-128


      Lasers and Electro-Optics Research and Technology
      Physics Research and Technology
   Binding: Softcover
   Pub. Date: 2011 3rd quarter
   Pages: 6 x 9 (NBC - C) 134pp.
   ISBN: 978-1-61209-933-0
   Status: AP
Status Code Description
AN Announcing
FM Formatting
PP Page Proofs
FP Final Production
EP Editorial Production
PR At Prepress
AP At Press
AV Available
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Attosecond Matter Tomography