Earlier quoted context omitted.
The problems with DT are low power density due to limits on power/area through the first wall, neutron damage to reactor materials, getting tritium breeding to work, and the need for a large non-nuclear part of the plant (turbine, generator). Helion potentially avoids or ameliorates all of these problems. Unlike with DT, where 80% of the power is in neutrons, a smaller fraction of power is from neutrons here (particu…
Also in Helion machine magnets coils are in aluminum. And because aluminum is (mostly) transparent to neutrons they don't get damaged. This is to be compared with the superconductors of tokamaks. So actually their idea is to put the shield (or the blanket) outside of the reactor, not between the magnets and the plasma. A lot easier to do. There are still many uncertainties, some because they are secretive and others…
The real thing to worry about in neutron irradiation of coils is damage to insulators, not to conductors. Insulators are very sensitive to radiation damage.