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Excitation of condensed matters by high-speed ions and short-pulse laser
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商品名称:Excitation of condensed matters by high-speed ions and short-pulse laser
物料号 :53825-00
重量:0.000千克
ISBN:9787040538250
出版社:高等教育出版社
出版年月:2021-02
作者:张红
定价:29.50
页码:136
装帧:精装
版次:1
字数:130
开本:16开
套装书:否

This textbook introduced some examples of applying the TDDFT, for high-speed, or highly-charged ion collision to graphene, laser process for fabrication of graphene sheets from stacked graphite or from graphene oxide. We also introduced photo-decomposition of HCl and H2O molecules which are influenced by carbon nanotubes. Further topics like as THz oscillation of E-field near graphene nano-ribbon induced by UV laser and quantum beat in aromatic molecules will open a new field of experimental works for nanomaterials. Finally, this textbook ended with some remarks for future problems of TDDFT applications, which would provide plenty of rooms of research for younger generation.

前辅文
Chapter 1 The time-dependent Schr-dinger equation
  §1.1 Relation with classical Newton's equation
  §1.2 Relation with continuity equation of flow
Chapter 2 Perturbation Theory
  §2.1 Assumption of weak interaction
  §2.2 Assumption of adiabatic switch-off as time goes infinite
Chapter 3 Collision with high-speed ion
  §3.1 Real-time propagation with the TDDFT
  §3.2 Gradual accelecration
Chapter 4 Electron dynamics under strong and short laser
  §4.1 Typical intensity of laser field
  §4.2 Useless of the perturbation theory
  §4.3 Choice of gauge
  §4.4 Real-time propagation of electron wave-function within time-dependent density functional theory
  §4.5 Coupling with molecular dynamics
  §4.6 Appendix: The one-to-one relation between time-dependent external potential and charge density
Chapter 5 Examples of simulations of materials under strong excitation
  §5.1 Ar+7 ion collision to graphene and excitation in projectile ion
  §5.2 He ion collision and subsequent electron emission from graphene
  §5.3 Photo-exfoliation of graphene sheets from graphite
  §5.4 Laser-field enhancement inside semiconducting carbon nanotube
  §5.5 Laser-induced dissociation of molecule inside semiconducting carbon nanotube
  §5.6 Laser-induced reduction of graphene oxide
  §5.7 Laser-induced synchronized motion of acetylene inside semiconducting carbon nanotubes
  §5.8 Pulse-laser induced photo-dynamics of hydrogen-terminated graphene(graphane)
  §5.9 Laser-driven enhancement of weak-attraction in noble gas dimer
  §5.10 Laser-driven enhancement of inter-layer attraction in hexagonal born nitride
  §5.11 THZ response of graphene nanoribbons to persistent UV laser
  §5.12 Water decomposition above 2-dimentional graphitic sheets
  §5.13 Quantum beat in fs order, observed in aromatic molecules
  §5.14 Optical response of noble metal thin film
Chapter 6 Future problems
  §6.1 For larger scale calculations: choice of computational schemes
  §6.2 Self-consistent field calculation along with the time axis
  §6.3 Problem of Ehrenfest Dynamics
  §6.4 Problem of adiabatic approximation in the exchange-correlation potentials
  §6.5 Decay of excited state followed by radiation
Chapter 7 Summaries

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