Qualitative comparisons of fusion reactor materials for waste handling and disposal (open access)

Qualitative comparisons of fusion reactor materials for waste handling and disposal

The activation of five structural materials and seven coolant/breeder/multiplier materials in a common reference neutron environment was calculated with the FORIG activation code. The reference environment was the neutron flux and spectrum at the first wall of the mirror advanced reactor study (MARS) reactor. Qualitative comparison of these activated materials were made with respect to worker protection requirements for gamma radiation in handling the materials and with respect to their classifications for near-surface disposal of radioactive waste.
Date: April 8, 1985
Creator: Maninger, R.C.
Object Type: Article
System: The UNT Digital Library
Scientific Potential and Design Considerations for an Undulator Beam Line on Aladdin Storage Ring (open access)

Scientific Potential and Design Considerations for an Undulator Beam Line on Aladdin Storage Ring

The unique features of undulator radiation, i.e., high photon flux and brightness, partial coherence, small beam divergence, spectral tunability, etc., mandate that undulators be included in the future plans for Aladdin. This will make it possible to perform the next generation of experiments in photon-stimulated spectroscopies. A team of scientists (see Appendix) has now been assembled to build an insertion device (ID) and the associated beam line at Aladdin. In considering the specifications for the ID, it was assumed that the ID beamline will be an SRC user facility. Consequently, design parameters were chosen with the intent of maximizing experimental flexibility consistent with a conservative design approach. A tunable {open_quotes}clamshell{close_quotes} undulator device was Chosen with a first harmonic tunable from 35 to 110 eV to operate on a 1 GeV storage ring. Higher harmonics will be utilized for experiments needing higher photon energies.
Date: April 8, 1985
Creator: Arko, A. J.; Bader, S. D.; Dehmer, J. L. & Kim, S. H.
Object Type: Report
System: The UNT Digital Library