It is interesting what might happen if a tiny black hole is created.
By my theory of gravimagnetics, both the near field Coulomb force and
near field magnetic forces would be felt outside the black hole. By
standard theory the effect of charge would disappear, leaving only
gravity. Rs, the Schwarzschild radius is given by:
Rs = 2 G m/c^2
and if we use m to be the mass of a proton plus electron we get:
Rs = 2.485x10^-54 m
"All we have to do" to test the outcome with regards to fusion is
shrink a proton to a tiny fraction of the Planck length of
1.6x10^-35 m to test the theory with regard to fusion! OTOH, we
could accelerate a proton to billions of electron volts to get the
relativistic mass to about where it is needed, but that probably
wouldn't tell us anything about fusion.
Still, it might be most interesting to see if tiny black holes are
seen to make tracks in particle detectors, if the world holds
together long enough to make sense of the tracks.
Best regards,
Horace Heffner
http://www.mtaonline.net/~hheffner/