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The PUILS series delivers up-to-date reviews of progress in
Ultrafast Intense Laser Science, a newly emerging interdisciplinary
research field spanning atomic and molecular physics, molecular
science, and optical science, which has been stimulated by the
recent developments in ultrafast laser technologies. Each volume
compiles peer-reviewed articles authored by researchers at the
forefront of each their own subfields of UILS. Every chapter opens
with an overview of the topics to be discussed, so that researchers
unfamiliar to the subfield, as well as graduate students, can grasp
the importance and attractions of the research topic at hand; these
are followed by reports of cutting-edge discoveries. This tenth
volume covers a broad range of topics from this interdisciplinary
research field, focusing on electron scattering by atoms in intense
laser fields, atoms and molecules in ultrashort pulsed EUV and
X-ray light fields, filamentation induced by intense laser fields,
and physics in super-intense laser fields.
This volume covers a broad range of topics focusing on atoms,
molecules, and clusters interacting in intense laser field, laser
induced filamentation, and laser plasma interaction and
application. The PUILS series delivers up-to-date reviews of
progress in Ultrafast Intense Laser Science, a newly emerging
interdisciplinary research field spanning atomic and molecular
physics, molecular science, and optical science, which has been
stimulated by the recent developments in ultrafast laser
technologies. Each volume compiles peer-reviewed articles authored
by researchers at the forefront of each their own subfields of
UILS. Every chapter opens with an overview of the topics to be
discussed, so that researchers unfamiliar to the subfield, as well
as graduate students, can grasp the importance and attractions of
the research topic at hand; these are followed by reports of
cutting-edge discoveries.
During the last ten years an unprecedented effort has been directed
towards study of the dynamics of ion collision phenomena in the gas
phase, usually with a view to applications in diverse areas,
ranging from fusion reactors and lasers to ionospheric and
interstellar chemistry and gaseous electronics. The principal aim
of this volume is to present a succinct overview of contemporary
interests and trends in the field of low energy ion-electron and
ion-atom (molecule) collision physics, with emphasis on fundamental
aspects. Researchers and students will become acquainted, in a
general and fairly non-specialized fashion, with recent progress in
this area of continuing intense activity. The material is divided
into two parts, dealing with atomic ions and molecular ions. Each
of the nine chapters has been prepared by authors who are amongst
the most eminent practitioners of contemporary ion collision
physics. The book is dedicated to Professor J.B. Hasted, one of the
pioneering workers who, in the course of his forty year career,
helped establish atomic collision physics as a field in its own
right.
The PUILS series delivers up-to-date reviews of progress in
Ultrafast Intense Laser Science, a newly emerging interdisciplinary
research field spanning atomic and molecular physics, molecular
science, and optical science, which has been stimulated by the
recent developments in ultrafast laser technologies. Each volume
compiles peer-reviewed articles authored by researchers at the
forefront of each their own subfields of UILS. Every chapter opens
with an overview of the topics to be discussed, so that researchers
unfamiliar to the subfield, as well as graduate students, can grasp
the importance and attractions of the research topic at hand; these
are followed by reports of cutting-edge discoveries. This tenth
volume covers a broad range of topics from this interdisciplinary
research field, focusing on electron scattering by atoms in intense
laser fields, atoms and molecules in ultrashort pulsed EUV and
X-ray light fields, filamentation induced by intense laser fields,
and physics in super-intense laser fields.
This volume covers a broad range of topics focusing on atoms,
molecules, and clusters interacting in intense laser field, laser
induced filamentation, and laser plasma interaction and
application. The PUILS series delivers up-to-date reviews of
progress in Ultrafast Intense Laser Science, a newly emerging
interdisciplinary research field spanning atomic and molecular
physics, molecular science, and optical science, which has been
stimulated by the recent developments in ultrafast laser
technologies. Each volume compiles peer-reviewed articles authored
by researchers at the forefront of each their own subfields of
UILS. Every chapter opens with an overview of the topics to be
discussed, so that researchers unfamiliar to the subfield, as well
as graduate students, can grasp the importance and attractions of
the research topic at hand; these are followed by reports of
cutting-edge discoveries.
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