HIGH-ENERGY COLLISIONAL ACTIVATION STUDIED VIA ANGLE-RESOLVED TRANSLATIONAL ENERGY-SPECTRA OF SURVIVOR IONS

被引:12
|
作者
THIBAULT, P [1 ]
ALEXANDER, AJ [1 ]
BOYD, RK [1 ]
机构
[1] NATL RES COUNCIL CANADA,ATLANTIC REG LAB,INST MARINE BIOSCI,1411 OXFORD ST,HALIFAX B3H 3Z1,NS,CANADA
关键词
D O I
10.1016/1044-0305(93)87001-S
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Angle-resolved translational energy spectroscopy has been applied to Cs4I3+ ions that survived 8 keV collisions with a range of collision gas targets, including inert gases and deuterium. The experimental data comprise values of the translational energy loss DELTAT(R) as a function of the (laboratory-frame) scattering angle theta(R) for each collision gas under conditions such that single-collision events dominated the scattering. The values of DELTAT(R) increase with theta(R), in accordance with very general expectations. However, for any value of theta(R), the values of DELTAT(R) for helium and deuterium as targets were almost indistinguishable from one another but were at least five to six times larger than those for neon and all other collision gases. These data have been shown to be consistent with theoretical considerations based upon conservation of energy and linear momentum. Theoretical approaches include the simple ''elastic-limit'' model, which makes no mechanistic assumptions, and a particular ''binary-model'' theory, which excludes electronic excitation as a possibility. Both theories are consistent with the experimental data and interpret the surprisingly large values of DELTAT(R) for low-mass targets in terms of large recoil energies of the target required to ensure conservation of momentum. The most likely alternative candidate as sink for DELTAT(R) is internal excitation of the target, but this possibility was excluded in the present work by choosing DELTAT(R) values less than the lowest excitation energies of the inert gas targets. Moreover, such an interpretation cannot explain the similar results obtained using helium and deuterium, which were markedly different from those obtained for all other collision gases.
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页码:835 / 844
页数:10
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