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Theory of Electron-Atom Collisions - Part 1: Potential Scattering (Paperback, Softcover reprint of the original 1st ed. 1995):... Theory of Electron-Atom Collisions - Part 1: Potential Scattering (Paperback, Softcover reprint of the original 1st ed. 1995)
Philip G. Burke, Charles J. Joachain
R2,950 Discovery Miles 29 500 Ships in 10 - 15 working days

The authors aim to hone the theory of electron-atom and electron-ion collisions by developing mathematical equations and comparing their results to the wealth of recent experimental data. This first of three parts focuses on potential scattering, and will serve as an introduction to many of the concepts covered in Parts II and III. As these processes occur in so many of the physical sciences, researchers in astrophysics, atmospheric physics, plasma physics, and laser physics will all benefit from the monograph.

Photon and Electron Collisions with Atoms and Molecules (Paperback, Softcover reprint of the original 1st ed. 1997): Philip G.... Photon and Electron Collisions with Atoms and Molecules (Paperback, Softcover reprint of the original 1st ed. 1997)
Philip G. Burke, Charles J. Joachain
R5,821 Discovery Miles 58 210 Ships in 10 - 15 working days

Research on photon and electron collisions with atomic and molecular targets and their ions has seen a rapid increase in interest, both experimentally and theoretically, in recent years. This is partly because these processes provide an ideal means of investigating the dynamics of many particle systems at a fundamental level and partly because their detailed understanding is required in many other fields, particularly astrophysics, plasma physics and controlled thermonuclear fusion, laser physics, atmospheric processes, isotope separation, radiation physics and chemistry and surface science. In recent years a number of important advances have been made, both on the experimental side and on the theoretical side. On the experimental side these include absolute measurements of cross sections, experiments using coincidence techniques, the use of polarised beams and targets, the development of very high energy resolution electron beams, the use of synchrotron radiation sources and ion storage rings, the study of laser assisted atomic collisions, the interaction of super-intense lasers with atoms and molecules and the increasing number of studies using positron beams.

Atoms, Solids, and Plasmas in Super-Intense Laser Fields (Paperback, Softcover reprint of the original 1st ed. 2001): Dimitri... Atoms, Solids, and Plasmas in Super-Intense Laser Fields (Paperback, Softcover reprint of the original 1st ed. 2001)
Dimitri Batani, Charles J. Joachain, S. Martellucci, Arthur N. Chester
R4,527 Discovery Miles 45 270 Ships in 10 - 15 working days

The recent developement of high power lasers, delivering femtosecond pulses of 20 2 intensities up to 10 W/cm , has led to the discovery of new phenomena in laser interactions with matter. At these enormous laser intensities, atoms, and molecules are exposed to extreme conditions and new phenomena occur, such as the very rapid multi photon ionization of atomic systems, the emission by these systems of very high order harmonics of the exciting laser light, the Coulomb explosion of molecules, and the acceleration of electrons close to the velocity of light. These phenomena generate new behaviour of bulk matter in intense laser fields, with great potential for wide ranging applications which include the study of ultra-fast processes, the development of high-frequency lasers, and the investigation of the properties of plasmas and condensed matter under extreme conditions of temperature and pressure. In particular, the concept of the "fast ignitor" approach to inertial confinement fusion (ICF) has been proposed, which is based on the separation of the compression and the ignition phases in laser-driven ICF. The aim of this course on "Atom, Solids and Plasmas in Super-Intense Laser fields" was to bring together senior researchers and students in atomic and molecular physics, laser physics, condensed matter and plasma physics, in order to review recent developments in high-intensity laser-matter interactions. The course was held at the Ettore Majorana International Centre for Scientific Culture in Erice from July 8 to July 14,2000.

Atoms, Solids, and Plasmas in Super-Intense Laser Fields (Hardcover, 2001 ed.): Dimitri Batani, Charles J. Joachain, S.... Atoms, Solids, and Plasmas in Super-Intense Laser Fields (Hardcover, 2001 ed.)
Dimitri Batani, Charles J. Joachain, S. Martellucci, Arthur N. Chester
R4,870 Discovery Miles 48 700 Ships in 10 - 15 working days

The recent developement of high power lasers, delivering femtosecond pulses of 20 2 intensities up to 10 W/cm , has led to the discovery of new phenomena in laser interactions with matter. At these enormous laser intensities, atoms, and molecules are exposed to extreme conditions and new phenomena occur, such as the very rapid multi photon ionization of atomic systems, the emission by these systems of very high order harmonics of the exciting laser light, the Coulomb explosion of molecules, and the acceleration of electrons close to the velocity of light. These phenomena generate new behaviour of bulk matter in intense laser fields, with great potential for wide ranging applications which include the study of ultra-fast processes, the development of high-frequency lasers, and the investigation of the properties of plasmas and condensed matter under extreme conditions of temperature and pressure. In particular, the concept of the "fast ignitor" approach to inertial confinement fusion (ICF) has been proposed, which is based on the separation of the compression and the ignition phases in laser-driven ICF. The aim of this course on "Atom, Solids and Plasmas in Super-Intense Laser fields" was to bring together senior researchers and students in atomic and molecular physics, laser physics, condensed matter and plasma physics, in order to review recent developments in high-intensity laser-matter interactions. The course was held at the Ettore Majorana International Centre for Scientific Culture in Erice from July 8 to July 14,2000.

Photon and Electron Collisions with Atoms and Molecules (Hardcover, 1997 ed.): Philip G. Burke, Charles J. Joachain Photon and Electron Collisions with Atoms and Molecules (Hardcover, 1997 ed.)
Philip G. Burke, Charles J. Joachain
R6,118 Discovery Miles 61 180 Ships in 10 - 15 working days

Research on photon and electron collisions with atomic and molecular targets and their ions has seen a rapid increase in interest, both experimentally and theoretically, in recent years. This is partly because these processes provide an ideal means of investigating the dynamics of many particle systems at a fundamental level and partly because their detailed understanding is required in many other fields, particularly astrophysics, plasma physics and controlled thermonuclear fusion, laser physics, atmospheric processes, isotope separation, radiation physics and chemistry and surface science. In recent years a number of important advances have been made, both on the experimental side and on the theoretical side. On the experimental side these include absolute measurements of cross sections, experiments using coincidence techniques, the use of polarised beams and targets, the development of very high energy resolution electron beams, the use of synchrotron radiation sources and ion storage rings, the study of laser assisted atomic collisions, the interaction of super-intense lasers with atoms and molecules and the increasing number of studies using positron beams.

Theory of Electron-Atom Collisions - Part 1: Potential Scattering (Hardcover, 1995 ed.): Philip G. Burke, Charles J. Joachain Theory of Electron-Atom Collisions - Part 1: Potential Scattering (Hardcover, 1995 ed.)
Philip G. Burke, Charles J. Joachain
R3,122 Discovery Miles 31 220 Ships in 10 - 15 working days

The authors aim to hone the theory of electron-atom and electron-ion collisions by developing mathematical equations and comparing their results to the wealth of recent experimental data. This first of three parts focuses on potential scattering, and will serve as an introduction to many of the concepts covered in Parts II and III. As these processes occur in so many of the physical sciences, researchers in astrophysics, atmospheric physics, plasma physics, and laser physics will all benefit from the monograph.

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