In this paper the continuous absorption coefficient of the negative hydrogen ion, determined in an earlier paper (Ap. J., 102, 223, 1945) in terms of the matrix elements of the momentum operator, is further improved to take into account the effect of the static field of the hydrogen atom on the motion of the ejected electron. It is shown that for wave functions for the ground state of H- of the forms generally considered, the formula for the absorption cross-section can be reduced to the form K=3.7062/k(k2+0.05512)|∫∞0W2(r)χ1(r)dr|×10-18 cm2,where k denotes the momentum of the ejected electron in atomic units, W2(r) a certain weight function which can be tabulated, and χ1(r) the radial part of a p-spherical wave...
The photoabsorption of atomic hydrogen in a strong static magnetic field is studied. The bound state...
The negative ion of hydrogen continues to be important in atomic physics and astrophysics. Correlati...
The absorption and ionization cross sections of molecular hydrogen for the wavelength region from 85...
The continuous absorption coefficient of the negative hydrogen ion is discussed from the point of vi...
The photoionization cross-sections of the negative hydrogen ion derived in Paper IV, using Hart and ...
Some remarks on the quantum theory of the negative hydrogen ion are made, and attention is drawn to ...
Author Institution: Air Force Cambridge Research Laboratories, L. G. Hanscom FieldAbsorption coeffic...
The lifetime of the negative hydrogen ion in an electric field is of crucial importance for the desi...
The static field induced absorption spectrum of hydrogen has been investigated at high resolution an...
The purpose of the present paper is to obtain expressions for the intensities in the continuous spec...
In this dissertation, we investigate two problems. First, atomic hydrogen in a uniform magnetic fiel...
The absorption coefficient of H− in presence of interparticle interaction has been determined ...
Absorption of infrared and visible radiation from stellar emission spectra by the negative...
The radial wave functions χ0 and χ1 (of unit amplitude at infinity) of an electron moving ...
The purpose of this work is to provide reasonably accurate data on continuous absorption by Carbon n...
The photoabsorption of atomic hydrogen in a strong static magnetic field is studied. The bound state...
The negative ion of hydrogen continues to be important in atomic physics and astrophysics. Correlati...
The absorption and ionization cross sections of molecular hydrogen for the wavelength region from 85...
The continuous absorption coefficient of the negative hydrogen ion is discussed from the point of vi...
The photoionization cross-sections of the negative hydrogen ion derived in Paper IV, using Hart and ...
Some remarks on the quantum theory of the negative hydrogen ion are made, and attention is drawn to ...
Author Institution: Air Force Cambridge Research Laboratories, L. G. Hanscom FieldAbsorption coeffic...
The lifetime of the negative hydrogen ion in an electric field is of crucial importance for the desi...
The static field induced absorption spectrum of hydrogen has been investigated at high resolution an...
The purpose of the present paper is to obtain expressions for the intensities in the continuous spec...
In this dissertation, we investigate two problems. First, atomic hydrogen in a uniform magnetic fiel...
The absorption coefficient of H− in presence of interparticle interaction has been determined ...
Absorption of infrared and visible radiation from stellar emission spectra by the negative...
The radial wave functions χ0 and χ1 (of unit amplitude at infinity) of an electron moving ...
The purpose of this work is to provide reasonably accurate data on continuous absorption by Carbon n...
The photoabsorption of atomic hydrogen in a strong static magnetic field is studied. The bound state...
The negative ion of hydrogen continues to be important in atomic physics and astrophysics. Correlati...
The absorption and ionization cross sections of molecular hydrogen for the wavelength region from 85...