Thanks.
Your first answer was what I expected, but the second answer is interesting.
If the waves are random, then there should be a theoretical probability when E and B are both near zero in the cycle.
If so, then the probabilities would say, for example, that 1 in a billion (pure guess) particles would get through at this moment.
That moment could start as E & B are nearing their low point, passing through that low point, and then rising back to a point that would have significant reaction with the charged particles.
So during that "moment", is there a way to manipulated the waves, or their timing, to coincide with a generated particle speed, that is a speed achieved by accelerating particles, to take advantage of this "moment" where the laws of probabilities suggest 1 particle per billion would get through. If so, then the solution would be to create the sufficient magnetic field and then accelerate billions of particles such that at least 1 billion of them are arriving at the magnetic field during each "moment" cycle.
The probabilities would then suggest that at a particular moment the E and B fields would be near zero as the required number of charged particles are entering the field and at least 1 particle should pass through.
If this theory holds, then we should be able to work with the magnetic fields and a sufficient number of charged particles, to enable significantly more than 1 particle per "moment" to pass through.
If so, I have some other wonderings on how to put that to work.
This is just another thought experiment. Something that crossed my mind while watching the science channel...
Thanks