Velocity Distributions in Molecular Beams from Nozzle Sources
The Physics of Fluids · 1965 · 456 citations · 4 references
Rarefied FlowAeroacousticsCompressible FlowEngineeringPhysicsAerospace EngineeringFluid MechanicsAxial Velocity DistributionApplied PhysicsGas DynamicMach NumberAerodynamicsNozzle SourcesVelocity DistributionPropulsionOptical TrappingMultiphase FlowSupersonic Combustion
The velocity distributions in molecular beams of argon produced by the Kantrowitz-Grey supersonic nozzle technique have been investigated using a time-of-flight method. It is shown that the transition from continuum to free molecular flow in free jet expansion limits the minimum width of the velocity distribution which may be obtained. The Mach number corresponding to the axial velocity distribution of the expanding gas approaches a limit which varies inversely with the two-fifths power of the Knudsen number at the nozzle. With argon at room temperature the narrowest velocity distribution obtained corresponds to a Mach number of 23 (90% of the molecules within 5.4% of the most probable velocity).
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A High Intensity Source for the Molecular Beam. Part I. Theoretical
Arthur Kantrowitz, Jerry Grey · Review of Scientific Instruments · 1951
410 citations
A High Intensity Source for the Molecular Beam. Part II. Experimental
G. B. Kistiakowsky, W. P. Slichter · Review of Scientific Instruments · 1951
94 citations
High Intensity Molecular Beam Apparatus
Jacques M. Deckers, John B. Fenn · Review of Scientific Instruments · 1963
55 citations
An AC Cathode-Follower Circuit of Very High Input Impedance
J. Ross Macdonald · Review of Scientific Instruments · 1954
Electrical EngineeringOrdinary TubesCathode-follower Circuit+8
21 citations