Published December 1993 | Version v1
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Remarks on theoretical hot-atom chemistry

  • 1. Argonne National Lab., IL (United States)

Description

The publication of the 'Handbook of Hot Atom Chemistry', following the earlier volume 'Recent Trend and Application', was a major milestone in physical chemistry. Theoretical treatments of hot atom chemistry must address two classes of problems. The first class concerns the individual collisions of hot atoms with other atoms or molecules. The second class concerns the description of the consequences of the many collisions of hot atoms and their chemical environment. Most of the remarks pertain to the problems of the first class. The central issue is the adiabaticity of nuclear motions versus electronic motions. To be precise, any atomic core motion should be mentioned rather than pure nuclear motion, because tightly bound core electrons are largely irrelevant to the chemistry. When nuclear motions are sufficiently slow, or for other reasons that can be regarded as adiabatic, the collision problem is basically straightforward, therefore, interatomic and intermolecular forces can be assumed, and their consequences for nuclear motions are calculable in principle. In the case of non-adiabaticity being important, much more difficult problems arise, and it is briefly discussed, and the work by Phelps is cited. (K.I.)

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Part of:
Proceedings of the international seminar on the chemistry of high energy atoms

Additional details

Publishing Information

Imprint Title
Proceedings of the international seminar on the chemistry of high energy atoms
Imprint Pagination
270 p.
Journal Page Range
p. 155-166.
Report number
IAERU--9304

Conference

Title
International seminar on the chemistry of high energy atoms.
Dates
28-30 Oct 1992.
Place
Tokyo (Japan).

INIS

Country of Publication
Japan
Country of Input or Organization
Japan
INIS RN
26046540
Subject category
S38: RADIATION CHEMISTRY, RADIOCHEMISTRY AND NUCLEAR CHEMISTRY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CROSS SECTIONS; ENERGY LOSSES; HOT ATOM CHEMISTRY; ION-ION COLLISIONS; ION-MOLECULE COLLISIONS; MOLECULE-MOLECULE COLLISIONS; RECOILS; RESEARCH PROGRAMS; STOPPING POWER
Descriptors DEC
CHEMISTRY; COLLISIONS; ION COLLISIONS; MOLECULE COLLISIONS; RADIOCHEMISTRY

Optional Information