Niowave Report 11-30-2015
Overview
10 MeV electron beam
3.48 cm diameter beam pipe
Target optimization
Optimal Thickness
A 10 MeV electron beam with a 1cm radius uniform cylindrical spatial distribution impinges a windowless PbBi target. The target thickness is changed to determine the optimal thickness to emmitt positrons from the downstream surface of the PbBi target.
Optimal Solenoidal Field
Beam Pipe heating
The energy deposited by electrons scattered into a 3.48 diameter stainless steel beam pipe (1.65 mm thick) from a PbBi target as a function of a uniform Solenoidal magnetic field.
The histogram is binned in 100 (10 cm) bin widths. The surface area becomes
To convert From Mev/ e- to kW/cm^2 assuming a current of 1mA (10^-3 C/s) you
Solenoid Description
A 10 MeV electron beam with a radius of 0.5 cm was incident on a 2 mm thick PbBi target. The target is positioned at Z = -901 mm.