Elastic scattering of low-energy electrons from molecular hydrogen.
Elastic scattering cross section of low energy electrons calculated by continuum Hartree-Fock equations
SEARCH · Engineering Papers
Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Elastic scattering cross section of low energy electrons calculated by continuum Hartree-Fock equations
Elastic scattering cross section for low energy electrons on metastable He atoms, using polarized orbital method
Elastic differential scattering in low energy helium ion collisions, discussing quantal and secondary interference and two-state theory
Differential cross sections for elastic scattering of protons by Ar atoms in energy range 12.7-44.1 ev, estimating internuclear separation
Detection of vibrational structure of gases adsorbed on tungsten by low energy electron scattering
Theory of low energy positron helium scattering below positronium threshold - adiabatic method applied
Optical potential approach to low energy electron- helium scattering
Positron-helium scattering below positronium threshold, using adiabatic method previously tested in positron hydrogen scattering, presenting phase shifts and momentum transfer cross section computations
He-He ground state and first excited state potentials obtained from differential scattering cross sections
Forward scattering of metastable and ground state argon atoms after argon ion-atom charge transferring collisions, discussing excitation resonances
Examination of relative differential cross sections for inelastic scattering of CO(+) by Ar with a high-resolution ion-beam apparatus in which a CO(+) beam interacts with a neutral-Ar beam, and the energy, mass, and angular distribution of scattered ions are measured. Maxima in the inelastic energy-loss spectra occur at energies corresponding to CO(+) spectroscopic vibrational spacings. Weakly inelastic processes are observed below the threshold for vibrational energy loss, corresponding to rotational excitation with the relative importance of rotational transitions increasing with decreasing energy and scattering angle.
The observation of a gamma-ray line feature from the direction of the galactic center by Johnson, Harnden, and Haymes is interpreted as the 478-keV nuclear de-excitation of low-energy Li-7 cosmic rays as they inelastically scatter from the interstellar gas. The prediction of an associated line at 432 keV is proposed as a definitive test of this idea.
Electron impact spectra at right angle scattering for helium, nitrogen, ethylene and benzene
At times, the electron pitch angle distributions at synchronous orbit have been observed to be highly anisotropic. In the local morning region, distributions concentrated near 90 deg are often observed in particles of less than approximately 2000 V. This anisotropy decreases with increasing energy from 1 keV to the detector's limit at 50 keV. The time development of anisotropy is consistent with production by pitch angle scattering processes which are not effective on electrons with small velocities parallel to the magnetic field. Another type of distribution has been observed with the low-energy (below 1000 V) electrons concentrated parallel and antiparallel to the magnetic field. These distributions are only seen in the dusk sector, but this may be an orbital artifact.
The molecular-beam technique is a means for producing isolated atoms or molecules within a narrow range of speed and solid angle. The phenomena studied with molecular beams can be classified as single-particle interactions, many-particle interactions, and two particle-interactions. The results of scattering experiments fall into two categories including collisions that do not result in atomic rearrangements and collisions that do. Experimental methods are discussed, giving attention to low-energy beams, high-energy beams, and intermediate-energy beams. Examples are presented to illustrate the information that can be obtained from elastic, inelastic, and reactive scattering.
Failure of conventional adiabatic criterion in case of excitation of helium atoms by helium ions
Low energy spectrum of cosmic rays corrected for solar modulation and diffusive passage through interstellar matter
Electron impact spectrum of ethylene at low energy and right angle scattering, noting unresolved and forbidden transitions