This MFMP burst is a one time thing that occurs at the start of the excess heat generation phase of the LENR reaction. It is a change of state between what had been to what will be. In order to understand this burst, we must understand what this phase change is.
I say that this phase change is from a state of quantum decoherence to a state of coherence, This might mark the beginning of the formation of a Bose condensate. This BEC formation corresponds to the reduction in the resistance in the wire during the experiment. I recommend that the wire resistance is monitored just before and then after the gamma burst. This can be checked experimentally. When the Bose condensate is formed, hit the reactor with a HUGE magnetic field to destroy the BEC. Use a capacitor bank discharge through a coil. This will cause the release of stored energy in the BEC as it comes apart. The destruction of the BEC is called a Bosenova. On Sat, Mar 12, 2016 at 2:23 PM, Stephen Cooke <[email protected]> wrote: > Bearing in mind the recent finding of high energy Bremsstrahlung like > spectra by MFMP and references to 100 keV stimulation elsewhere in the > literature. I wonder if Collision cascades of ions can become important in > these systems. They usually become relevant with ion collisions of a few > 10s keV or more and will generally lead regions with defects and vacancies > in the material. When they are caused by high energy events (MeV) they can > generate longer lived heat spikes that are cooled and damped by electron > phonon coupling (EPC). EPC is quite high in certain metals in particular > Iron, Nickel, palladium and Platinum due to the high number of electrons at > the fermi level in these metals. > > https://en.m.wikipedia.org/wiki/Collision_cascade > > In the Wiki article it implies the coupling between Collision Cascades and > EPC is not well understood. > > I found a paper though that seems to imply the effect of cooling due to > EPC is less than expected: > > http://www.acclab.helsinki.fi/~knordlun/pub/Nor98.pdf > > This paper does not look a LENR but more at the effect from a materials > point of view but I thought it interesting though for LENR too. On one hand > the defects caused by Collision Cascades might benefit LENR during material > preparation, on the other hand EPC may play a role in the active phase, > converting collision cascades from ion interactions into beneficial phonons > that may enable proton absorption or cooling heat spikes > > Just some thoughts. Has it come up before here? >

