INELASTIC-SCATTERING OF NO FROM AG(111) - INTERNAL STATE, ANGLE, AND VELOCITY RESOLVED MEASUREMENTS

被引:76
作者
RETTNER, CT [1 ]
KIMMAN, J [1 ]
AUERBACH, DJ [1 ]
机构
[1] FOM,1009 DB AMSTERDAM,NETHERLANDS
关键词
D O I
10.1063/1.460342
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We have determined the velocity distributions of individual quantum states of NO scattering from Ag(111) at specific scattering angles theta-f using molecular beam techniques to control the incidence energy E(i) and angle theta-i. We find that the mean energies of scattered species E(f) depend weakly on theta-f at low collision energies, but become increasingly independent of this parameter as E(i) approaches 1.0 eV. This is true for all final rotation states J. The previously reported insensitivity of the final kinetic energy to J is found to apply at all scattering angles, so that E(f) vs theta-f curves for high J fall only slightly below those for low J. This system is highly translationally inelastic at high incidence energies, with up to 55% of E(i) being lost to phonons at E(i) = 1.0 eV. Angular distributions are relatively insensitive to J at low E(i), but for high E(i) the peak flux is found to shift away from the surface normal as E(i) increases. The effect of the surface temperature only becomes apparent at low incidence energies. A search for supernumerary rotational rainbows reveals no discernible oscillations even for the lowest surface temperatures. We believe that these supernumerary oscillations may be damped by "surface corrugation" effects for this system. Discussion focuses on the observed anticorrelation between kinetic energy transfer to phonons and to rotation, the extent to which parallel momentum is conserved in this system, and energy-angle scaling laws for energy transfer. In this latter case we show that energy transfer in this system scales approximately with the quantity E(i) cos theta-i, over the full range of conditions covered.
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页码:734 / 750
页数:17
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