The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of gas atoms on metal surfaces, has been studied. The impact of this excitation process on the energy spectrum of the metal electrons has been investigated at steady state. The energy distribution function of the electrons is shown to be non-thermal to an extent that depends on the reaction rate, probability distribution function for e-h pair creation and physical parameters of the material. The model has been applied to compute the electron spectra of metal surfaces, using kinetic data on H atom recombination that are available from the literature. The number of electrons made available for detection as chemicurrent has been derived and compared...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
A phenomenological model is developed to describe the process of energy disposal, ruled by electron-...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
A phenomenological model is developed to describe the process of energy disposal, ruled by electron-...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The energy disposal via electron-hole (e-h) pair formation in the highly exoergic recombination of g...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The effect of energy disposal to metal surfaces, via electron-hole (e-h) pair excitation, on the rat...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
The dynamics of energy relaxation of the adspecies in exoergic processes at metal surfaces has been ...
A phenomenological model is developed to describe the process of energy disposal, ruled by electron-...