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3 edition of Atomic and molecular processes with short intense laser pulses found in the catalog.

Atomic and molecular processes with short intense laser pulses

NATO Advanced Research Workshop on Atomic and Molecular Processes with Short Intense Laser Pulses (1987 Lennoxville, QueМЃbec)

Atomic and molecular processes with short intense laser pulses

by NATO Advanced Research Workshop on Atomic and Molecular Processes with Short Intense Laser Pulses (1987 Lennoxville, QueМЃbec)

  • 43 Want to read
  • 19 Currently reading

Published by Plenum Press in New York .
Written in English

    Subjects:
  • Multiphoton processes -- Congresses.,
  • Laser pulses, Ultrashort -- Congresses.,
  • Coherence (Nuclear physics) -- Congresses.,
  • Lasers in chemistry -- Congresses.

  • Edition Notes

    Statementedited by André D. Bandrauk.
    SeriesNATO ASI Series., v. 171
    ContributionsBandrauk, André D., North Atlantic Treaty Organization. Scientific Affairs Division.
    Classifications
    LC ClassificationsQC793.5.P427 N38 1987
    The Physical Object
    Paginationx, 481 p. :
    Number of Pages481
    ID Numbers
    Open LibraryOL2527266M
    ISBN 100306428261
    LC Control Number88002509

    The amplitude and frequency of laser light can be routinely measured and controlled on a femtosecond ( s) timescale1. However, in pulses comprising just a few wave cycles, the amplitude Cited by: The ionization dynamics of Ar and Ne atoms as well as N2 and O2 molecules in intense ultra-short laser pulses has been investigated by means of highly differential correlated electron-ion momentum spectroscopy. The main goal was to understand the detailed mech-anism behind Non-Sequential Double Ionization (NSDI) and the influence of the atomic.

    Laser beams; Related name. Gavrila, Mihai, Notes Supplement 1 to Advances in atomic, molecular, and optical physics. Bibliographic references Includes bibliographical references and index. Contents Multiphoton ionization / H.G. Muller, P. Agostini and G. Petite -- Photoionization with ultra-short laser pulses / R.R. Freeman. Ohio State has long been a center for atomic, molecular and optical physics (AMO physics). The research program in AMO goes beyond traditional spectroscopic studies, encompassing laser physics, ultrafast optical physics, laser-plasma processes, investigations of planetary atmospheres and the interstellar medium, optical cooling and trapping of atoms, network and quantum information sciences.

    This work discusses laboratory measurements of atomic and diatomic molecular species in laser-plasma generated in gases. Noticeable self-absorption of the Balmer series hydrogen alpha line occurs for electron densities of the order of one tenth of standard ambient temperature and pressure density. Emission spectra of selected diatomic molecules in air or specific gaseous mixtures at or near Cited by: 2. is to scrutinize the behavior of eigenvalues of an electron of Helium atom under the influence of external electric field and exposed to linearly polarized intense laser field radiation. This study will be of great interest in the areas of atomic and molecular processes in external fields including interactions with strong fields and short Cited by: 1.


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Atomic and molecular processes with short intense laser pulses by NATO Advanced Research Workshop on Atomic and Molecular Processes with Short Intense Laser Pulses (1987 Lennoxville, QueМЃbec) Download PDF EPUB FB2

Atomic and Molecular Processes with Short Intense Laser Pulses. Authors: Bandruk, Andre D. Free Preview. Buy Atomic and Molecular Processes with Short Intense Laser Pulses (Nato Asi Subseries B: (Closed)) (Nato ASI Subseries B: ()) on FREE SHIPPING on qualified orders Atomic and Molecular Processes with Short Intense Laser Pulses (Nato Asi Subseries B: (Closed)) (Nato ASI Subseries B: ()): Bandruk, Andre D.: : BooksCited by: Atomic and Molecular Processes with Short Intense Laser Pulses.

Editors (view affiliations) André D. Bandrauk; Theory of Laser-Pulse-Induced Molecular Dynamics: Gas-Phase Molecular Collisions and Adbond Dynamics. Intense-Field Radiative Processes in the.

Buy Atomic and Molecular Processes with Short Intense Laser Pulses on FREE SHIPPING on qualified orders Atomic and Molecular Processes with Short Intense Laser Pulses: Andre D.

Bandruk: : Books. Example topics covered by this book include the study of ultrafast processes in large molecules Atomic and molecular processes with short intense laser pulses book attosecond pulses, control of ultrafast electron dynamics in solids with shaped femtosecond laser pulses, light-driven ultrafast plasmonic processes on surfaces and in nanostructures as well as research on atomic and molecular systems under intense X-ray radiation.

This book is equally Format: Hardcover. Introduction. The advent of short (τ intense (I > 10 14 W/cm 2) laser pulses has led to investigations of the regime of nonlinear, nonperturbative laser–matter atomic case is now well documented in a recent review that emphasizes the discovery of new nonlinear multiphoton process such as above threshold ionization (ATI) and high order harmonic by: 4.

Gavrila M., Pont M. () Atomic Hydrogen in Intense, High-Frequency Laser Fields. In: Bandrauk A.D. (eds) Atomic and Molecular Processes with Short Intense Laser Pulses. Springer, Boston, MAAuthor: M.

Gavrila, M. Pont. The book is a comprehensive edition which considers the interactions of atoms, ions and molecules with charged particles, photons and laser fields and reflects the present understanding of atomic processes such as electron capture, target and projectile ionisation, photoabsorption and others.

Atomic and molecular clusters in intense laser pulses Dissertation zur Erlangungdes akademischenGrades The quest to understand fast processes at the atomic and molecular scale has inspired the development of laser physics and technology.

Today, bursts lium droplets under the influence of intense laser pulses, which is one of the key. Example topics covered by this book include the study of ultrafast processes in large molecules using attosecond pulses, control of ultrafast electron dynamics in solids with shaped femtosecond laser pulses, light-driven ultrafast plasmonic processes on surfaces and in nanostructures as well as research on atomic and molecular systems under.

Probing atomic and molecular targets by intense bicircular counter-rotating laser fields Mahmoud Abu-samha1,3 and Lars Bojer Madsen2 1College of Sciences and Humanities, Fahad bin Sultan University, PO BoxTabukSaudi Arabia 2Department of Physics and Astronomy, Aarhus University, DK Aarhus C, Denmark E-mail: [email protected] and [email protected] by: 3.

The authors initiated the I 2 explosion by shining an intense infrared laser pulse on a gas of the molecules. The laser stripped each molecule of two electrons in its outermost orbitals and broke the iodine-iodine chemical bond.

X-ray pulses, whose timing was carefully synchronized with that of the infrared pulse, allowed them to measure how. NIKOLAI V. TKACHENKO, in Optical Spectroscopy, Pulsed lasers. Pulsed lasers are used for excitation, and they are important parts of the spectroscopy instruments designed for the time resolved experiments.

There are also applications were utilization of short light pulses is a key tool for monitoring, e. the pump-probe method requires short pulses for both excitation and monitoring. Coherent quantum control of atomic and molecular processes by using the technique of laser pulses Article in Journal- Korean Physical Society July with 24 Reads How we measure 'reads'.

Warren W.S., Haner M. () Laser Pulse Shaping for State-Selective Excitation. In: Bandrauk A.D. (eds) Atomic and Molecular Processes with Short Intense Laser Pulses.

Springer, Boston, MACited by: 1. Interaction of Intense Short Laser Pulses with Gases of Nanoscale Atomic and Molecular Clusters.

r: Heating is dominated by a collision-less resonant absorption process that involves energetic electrons transiting through the cluster. A size-dependent intensity threshold defines the onset of this resonance [Taguchi et Author: Ayush Gupta. Interaction of Intense Short Laser Pulses with Gases of Nanoscale Atomic and Molecular Clusters.

View/ Open. Antonsen, Thomas M. Metadata Show full item record. Abstract. We study the interaction of intense laser pulses with gases of van der Waals bound atomic aggregates called clusters in the range of laser-cluster parameters such that Author: Ayush Gupta.

CiteSeerX - Document Details (Isaac Councill, Lee Giles, Pradeep Teregowda): We study the interaction of intense laser pulses with gases of van der Waals bound atomic aggregates called clusters in the range of laser-cluster parameters such that kinetic as well as hydrodynamic effects are active.

The clustered gas absorbs the laser pulse energy efficiently producing x-rays, extreme ultraviolet. ATOMS IN INTENSE LASER FIELDS of short pulses of coherent radiation, has opened a new domain in the study of atomic multiphoton processes in intense laser fields: multiphoton ionization, har-monicgenerationandlaser-assistedelectron–,inChapter8weFile Size: KB.

Journal of Physics B: Atomic, Molecular and Optical Physics Dynamics of H 2 + in intense laser fields To cite this article: A Giusti-Suzor et al J. Phys. B: At. Mol. Opt. Phys. 28 View the article online for updates and enhancements.

Related content Ionization and dissociation of with intense and ultra-short laser pulses at Cited by:. Example topics covered by this book include the study of ultrafast processes in large molecules using attosecond pulses, control of ultrafast electron dynamics in solids with shaped femtosecond laser pulses, light-driven ultrafast plasmonic processes on surfaces and in nanostructures as well as research on atomic and molecular systems under intense X-ray : $subjected to the intense laser field.

Ionization process such as field Atomic, Molecular. and Optical resulted from irradiation of a cluster by a super-intense ultra-short laser pulse.A. Vella, J. Houard, in Atom Probe Tomography, Introduction. The field evaporation process can be triggered by electrical pulses or laser pulses. Laser pulses are used to reduce the risk of rupture of fragile materials such as multilayers [1,2].The use of electrical pulses induces a repeated mechanical stress applied to the sample, which can be at the origin of its rupture.