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Computational Strong-Field Quantum Dynamics

Intense Light-Matter Interactions

Produktform: E-Buch Text Elektronisches Buch in proprietärem

This graduate textbook introduces the com-putational techniques to study ultra-fast quantum dynamics of matter exposed to strong laser fields. Coverage includes methods to propagate wavefunctions according to the time dependent Schrödinger, Klein-Gordon or Dirac equation, the calculation of typical observables, time-dependent density functional theory, multi configurational time-dependent Hartree-Fock, time-dependent configuration interaction singles, the strong-field approximation, and the microscopic particle-in-cell approach. Contents How to propagate a wavefunction? Calculation of typical strong-field observables Time-dependent relativistic wave equations: Numerics of the Dirac and the Klein-Gordon equation Time-dependent density functional theory The multiconfiguration time-dependent Hartree-Fock method Time-dependent configuration interaction singles Strong-field approximation and quantum orbits Microscopic particle-in-cell approach weiterlesen

Dieser Artikel gehört zu den folgenden Serien

Elektronisches Format:

Sprache(n): Englisch

ISBN: 978-3-11-041934-4 / 978-3110419344 / 9783110419344

Verlag: De Gruyter

Erscheinungsdatum: 24.04.2017

Seiten: 290

Auflage: 1

Herausgegeben von Dieter Bauer
Beiträge von Thomas Brabec, Heiko Bauke, Stefan Pabst, Christian Peltz, Thomas Fennel, Chris R. McDonald, Dejan B. Miloševi?, Gisela Pöplau, Robin Santra, Charles Varin, Dejan B. Milošević

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