Brad Lowe: It was reported that the nickel isotopes all react, except that
Ni 61 does not react. (Ideas why this would be?)


The LENR story is turning out to be a puzzle with many parts. The most
obscure piece of this puzzle is the shape and character of the EMF that
forms in the “Hot Spot” when nanoantennas concentrate photons through
“dark mode” resonance formation.


This resonance formation process packs huge vortex currents together in a
nano-scopic volume. One possible formation that this ball of charged light
can assume is the anapole ring which resembles the plasmoid.


Today, Defkalion stated that the reactor packs huge magnetic fields capable
of disrupting all electronic equipment in the general vicinity of the
reactor core. The core had to be shielded by a double ply faraday cage.
That huge field is produced by nano-particles in a bath of infrared
radiation.


 This type and strength of magnetism is important in the nucleus of an
atom. These nuclei also pack huge magnetic fields. These fields are greatly
effected by Parity non conservation (PNC) effects.


For the nuclei with an unpaired neutron the Parity non conservation (PNC)
effects may be strongly suppressed! This is true for odd numbered nucleons.
The nuclear magnetic field is not symmetrical; it is unbalanced like a top
with a weight glued to its outer edge.


What is PCN? Here is some background info


http://www.youtube.com/watch?v=WHp-ocXIs1U


Parity Non-Conservation in the Weak Interaction


Defkalion states as follows: “We realized also that Ni58, Ni60, Ni62 and
Ni64 stable isotopes where “willing” to participate in a LENR reaction,
while Ni61 was not.”


In general, we know that the isotopes with an odd number of nucleons do not
react under LENR; only the ones with even number of nucleons do.


This means that there is a nuclear configuration component that is
important in the LENR process. How the quarks are paired makes a difference
in LENR.



Parity non conservation (PCN) may be a determining factor in the LENR
reaction involving anapole magnetic effects.


If it were simply a matter of shear EMF disruptive power, the configuration
of the nucleons in the nucleus would not be important.


If it were simply a matter of charge concentration, PCN would not be
important. This charge concentration is what Dr, Kim and Defkalion think is
at the center of the even isotope mystery.


But it is a strong anapole single polled magnetic field that could change
the handedness of some subatomic particles resulting in a disruptive
nuclear reaction. Higgs superconductivity is not easy to disrupt but when
it is disrupted, the quarks are all rearranged because of it.



By the way, when nickel get to 137C, its magnetic field breaks into spin
ice of rotating vortex magnetic fields. Every bit of anapole magnetic power
helps disrupt that even nucleus.

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