... For the record the reason there is no e-field in a wire that has current flowing is because the e-field has been replaced with a magnetic field. the H-field actually keeps the electrons moving (in a perfect conductor)(gota have a little e-field in a normal conductor to over come resistance)
There's no point in arguing about the definition of capacitor. Material properties allow charge to be stored in material objects. When two surfaces of charge storing material are separated by a dielectric, you have a capacitor. I think we have no arguments there.
However, your picture from a few posts back was worth much more than your words. It was absolutely a correct picture and helped me get my neurons back in a row. The field generated between cloud and sea does in fact induce a separation of charge in the mast/conductor. It is that separation of charge that generates a field within the
conductor, that combined with the cloud/sea field yields a zero field within the conductor. The geometry of the problem is strange, but correct. The very top of the mast and the very bottom of the mast are charged surfaces. However, it remains true that the potential in a conductor is the same everywhere. Since there is no field inside the conductor, the potential must be a constant.
E = del V and 0 = del <constant>
The question is what is that constant potential and the answer is it depends on the overall charge contained within the conductor. If the net charge is the same as it is at ground (say if the mast were grounded to sea through the keel), then the mast would stay at ground potential. If that connection were broken, the mast would remain at ground potential until some other event caused
the net charge in the mast to change.
Good line of thought Riddler. The mast is an equipotential conductor at static equilibrium. No portion of the mast is at a different potential. No current flows. The surrounding air may be at a different potential, but there is no path to conduct your free electrons off the mast and down that gradient. On the other hand, that led me back to consider walt's original proposal. If a device could measure the difference in potential between the top of the mast and a point say one meter away from the top of the mast, then the lightning warning system might be a practical and useful device.