The mobility of N+ ions in ground-state helium gas at very low temperature is examined with explicit inclusion of spin–orbit coupling effects. The ionic kinetics is treated theoretically with the three-temperature model. The N+–He interaction potentials, including spin–orbit coupling, are determined using high-level ab initio calculations. Then, the classical and quantal transport cross sections, both needed in the computation of the mobility coefficients, are calculated in terms of the collisional energy of the N+–He system. The numerical results, at temperature 4.3 K, show the spin–orbit interactions have negligible effect on the mobility coefficients
We report the results of the experiment aimed at measuring the mobility of O2- ions in dense argon g...
We have studied the mobilities of positive and negative ions in solid helium 3 and 4, by measuring d...
The general results obtained in the preceding article are applied to the study of transport phenomen...
The mobility of N+ ions in ground-state helium gas at very low temperature is examined with explicit...
Mobilities of positive and negative atomic ions in helium have been determined using both two- and t...
New experimental measurements are reported for the mobility of O+ ions in He gas at 300 K. The accur...
The low field mobility of positive and negative ions in liquid He 3 was measured for temperatures b...
We calculate accurate interatomic potentials for the interaction of a singly-charged carbon cation w...
Recent theoretical advances have made it possible to calculate ab initio interaction potentials for ...
We calculate accurate interatomic potentials for the interaction of a singly-charged carbon cation w...
We calculate accurate interatomic potentials for the interaction of a singly-charged carbon cation w...
The low field mobility of positive and negative ions in liquid He 3 was measured for temperatures b...
Recent theoretical advances have made it possible to calculate ab initio interaction potentials for ...
Recent theoretical advances have made it possible to calculate ab initio interaction potentials for ...
New experimental results are presented for the mobilities of (1) the H<sub>3</sub>O<sup>+</sup>(H<su...
We report the results of the experiment aimed at measuring the mobility of O2- ions in dense argon g...
We have studied the mobilities of positive and negative ions in solid helium 3 and 4, by measuring d...
The general results obtained in the preceding article are applied to the study of transport phenomen...
The mobility of N+ ions in ground-state helium gas at very low temperature is examined with explicit...
Mobilities of positive and negative atomic ions in helium have been determined using both two- and t...
New experimental measurements are reported for the mobility of O+ ions in He gas at 300 K. The accur...
The low field mobility of positive and negative ions in liquid He 3 was measured for temperatures b...
We calculate accurate interatomic potentials for the interaction of a singly-charged carbon cation w...
Recent theoretical advances have made it possible to calculate ab initio interaction potentials for ...
We calculate accurate interatomic potentials for the interaction of a singly-charged carbon cation w...
We calculate accurate interatomic potentials for the interaction of a singly-charged carbon cation w...
The low field mobility of positive and negative ions in liquid He 3 was measured for temperatures b...
Recent theoretical advances have made it possible to calculate ab initio interaction potentials for ...
Recent theoretical advances have made it possible to calculate ab initio interaction potentials for ...
New experimental results are presented for the mobilities of (1) the H<sub>3</sub>O<sup>+</sup>(H<su...
We report the results of the experiment aimed at measuring the mobility of O2- ions in dense argon g...
We have studied the mobilities of positive and negative ions in solid helium 3 and 4, by measuring d...
The general results obtained in the preceding article are applied to the study of transport phenomen...