Reprint

Photon and Particle Impact Spectroscopy and Dynamics of Atoms, Molecules, and Clusters

Edited by
March 2024
188 pages
  • ISBN978-3-7258-0237-1 (Hardback)
  • ISBN978-3-7258-0238-8 (PDF)

This book is a reprint of the Special Issue Photon and Particle Impact Spectroscopy and Dynamics of Atoms, Molecules, and Clusters that was published in

Physical Sciences
Summary

There have been three recent developments in AMO and cluster science: a) new and progressively precise technologies to synthesize materials with good purity statistics for their gas-phase, as thin films, or in their liquid-phase; b) significant diversification of pump–probe laser and particle sources and related experimental techniques allowing us to access both the energy response and temporal response of the target materials in ultrafast time scales; and c) increasing the availability of high-performance computer software on ever faster computers, which can be processed in both series and parallel mode. These developments have empowered the broader AMO community to address more detailed and critical aspects of the response and relaxation processes. As a result, many groups have become involved in ever-more challenging and complex investigations, pushing the frontier of knowledge. This Special Issue will provide a forum in which to broadcast emerging research results, creating a repository professional knowledge, novel research questions and outlooks, and stimulating brand-new collaborations.

Format
  • Hardback
License and Copyright
© 2022 by the authors; CC BY-NC-ND license
Keywords
Rabi dynamics; laser pulse; photoionization; photoelectron energy spectrum; Autler–Townes splitting; multiple-peak pattern; dressed states; dynamic interference; atom; physics; cluster; many-body; quantum mechanics; chaos; endohedral; Regge poles; generalized bound states; multi-electron atoms; elastic cross sections; anionic binding energies; electron affinities; electron correlation; core–polarization interaction; strong field ionization; molecular ionization; Quantum Trajectory Monte Carlo; optical dipole trap; RRPA; photoionization; time delay; recoil ion momentum spectroscopy; coulomb fragmentation; coincidence imaging; ionization; coherence; twisted electrons; Laguerre-Gauss beam; attosecond time delay; noble gas; halogen atoms; relativistic random-phase approximation; atomic data; transition probability; oscillator strength; lifetime; plasma density; spin-orbit interaction; atomic photoionization; collective effects in photoionization; sodium clusters; plasmon resonances; correlation minimum; effects of exchange–correlation functionals in photoionization; non-dipole interactions; photoelectron angular distributions; open-shell atomic systems; Cooper minimum; GRASP; RATIP; PAH; proton collision; multi-fragmentation; n/a

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