Spatial profiles of effusive molecular beams and their dependence on gas species
- 1 October 1993
- journal article
- Published by IOP Publishing in Measurement Science and Technology
- Vol. 4 (10) , 1143-1153
- https://doi.org/10.1088/0957-0233/4/10/019
Abstract
The spatial profiles of molecular beams formed by both single and multicapillary sources have been investigated for He, Ne, Ar, Kr, H2 and N2. The profile measurements were undertaken at distances from the source exit and driving pressures which are typical of those used in atomic collision experiments (1-5 mm and 0.02-10 Torr respectively). The experimental results indicate the clear superiority of a capillary array source over a single tube source, of similar overall dimensions, in producing a well collimated molecular beam over a wide range of driving pressures and distances from the capillary exit. They also indicate that there is a measurable dependence of the beam profile on gas species, particularly at the higher pressures studied. The significance of this result for the relative flow, cross section normalization technique is discussed.Keywords
This publication has 12 references indexed in Scilit:
- Wall collisions, angular flux, and pumping requirements in molecular flow through tubes and microchannel arraysJournal of Vacuum Science & Technology A, 1989
- Principles and procedures for determining absolute differential electron-molecule (atom) scattering cross sectionsJournal of Physics E: Scientific Instruments, 1989
- The angular distribution of thermal molecular beams formed by single capillaries in the molecular flow regimeVacuum, 1988
- The spatial distribution of flux produced by single capillary gas dosersVacuum, 1988
- Measurement of gas flux distributions from single capillaries using a modified, uhv-compatible ion gauge, and comparison with theoryVacuum, 1986
- The production of intense atomic beamsVacuum, 1973
- Molecular Beam Sources Fabricated from Multichannel Arrays. III. The Exit Density ProblemJournal of Applied Physics, 1970
- Molecular-Beam Sources Fabricated from Multichannel Arrays. I. Angular Distributions and Peaking FactorsJournal of Applied Physics, 1969
- Multiple Tube Collimator for Gas BeamsJournal of Applied Physics, 1960
- Molecular Beam Formation by Long Parallel TubesJournal of Applied Physics, 1960