Linked from
The 31 pages that link to Heavy-ion fusion, each with the reason it gives.
Superheavy elementRelated: Experiments use these collisions to create many superheavy elements.
NihoniumNarrower topic: Nihonium was formed by fusing a zinc projectile with a bismuth target.
DarmstadtiumRelated: The first darmstadtium atoms were made by fusing nickel ions with lead nuclei.
UnbiuniumRelated: Heavy-ion fusion is a principal proposed route to creating unbiunium.
BerkeliumRelated: Fusion reactions with berkelium targets can create elements beyond it.
FermiumRelated: Heavy-ion reactions can synthesize fermium isotopes for nuclear-structure studies.
UnbitriumBroader topic: Experiments seeking element 123 would likely use heavy-ion fusion.
BohriumRelated: Fusion reactions produce bohrium nuclei in accelerator experiments.
UnbienniumRelated: Fusion could combine target and projectile nuclei to form element 129.
UnpentbiumRelated: Fusion is a principal route used to attempt the creation of superheavy elements.
UnquadseptiumRelated: It is a principal strategy for attempting to create superheavy elements.
UntrioctiumRelated: Fusion is a principal proposed route to creating nuclei beyond known elements.