Adsorption and two-body recombination of atomic hydrogen on He-He mixture films
arXiv:cond-mat/0010117 · doi:10.1103/PhysRevLett.86.3356
Abstract
We present the first systematic measurement of the binding energy of hydrogen atoms to the surface of saturated He-He mixture films. is found to decrease almost linearly from 1.14(1) K down to 0.39(1) K, when the population of the ground surface state of He grows from zero to cm, yielding the value K cm for the mean-field parameter of H-He interaction in 2D. The experiments were carried out with overall He concentrations ranging from 0.1 ppm to 5 % as well as with commercial and isotopically purified He at temperatures 70...400 mK. Measuring by ESR the rate constants and for second-order recombination of hydrogen atoms in hyperfine states and we find the ratio to be independent of the He content and to grow with temperature.
4 pages, 4 figures, all zipped in a sigle file. Submitted to Phys. Rev. Lett
Cited by in corpus (5)
- Cold Collision Frequency Shift in Two-Dimensional Atomic Hydrogen
- Thermal compression of two-dimensional atomic hydrogen to quantum degeneracy
- Thermal compression of atomic hydrogen on helium surface
- Hyperfine frequency shift in two-dimensional atomic hydrogen
- Spin-polarized hydrogen adsorbed on the surface of superfluid 4He