Brian—

It my be that there are Cooper pairs of particles—maybe hydrogen or bigger 
isotopes—formed during the synthesis of the barium compounds.  The magnetic 
conditioning described by Weber etal in the video disrupts the lower energy 
state of the  Cooper pairs originally formed creating an excited system with 
“loosely bound” particles which seek a lower stable energy state,  given 
necessary resonant conditions.

Thus, the entangled system seeks (produces) a different—transmuted—nuclear 
species (at a lower potential energy) with the release of charged particles and 
a resulting voltage on the large block of material or Manelas device.

The magnetic binding of Cooper paring would be a key parameter to understand 
for hydrogen as well as other particles with an intrinsic magnetic moment.  The 
excited state caused by a strong B field may derive directly from the theory 
associated with Cooper paring.  I would guess that the  magnetic B field will 
degenerate the entangled system, thus creating a higher probability that a 
nuclear reaction between constituents of the entangled system can occur by 
tunneling as a result of the close proximity of individual constituents.

A strong electric field imposed upon the system would also have an effect by 
changing resonant conditions in any given entangled system as well as system 
degeneration.   The surface of the block would be more influenced by the 
electric field than the deeper material.   If this were the case, the deeper 
parts of the device may serve as a reservoir for “depaired” loosely coupled 
entities  which move to the surface to an entangled system where transmutation 
happens.

The surface cooling may actually be important in creating a thermal gradient in 
the block of material to drive the loosely coupled entities to the surface.  
And the 2-dimensional nature of the surface may further increase degeneration 
and the likelihood of tunneling.

A similar Cooper paring may occur in Pd FCC lattice sites with degenerate 
conditions created by strong magnetic fields, improving the odds for D fusion 
seen in that system particularly near the surface of the Pd crystal lattice.

Bob Cook






From: Brian Ahern<mailto:ahern_br...@msn.com>
Sent: Monday, April 10, 2017 11:33 AM
To: vortex-l@eskimo.com<mailto:vortex-l@eskimo.com>
Subject: Re: [Vo]:The process by which the proton decays in LENR


Axil, How can we apply this concept to the Manelas Billet?



Symmetry breaking may decouple spins from underlying delocalized vibrational 
modes.


From: Axil Axil <janap...@gmail.com>
Sent: Sunday, April 9, 2017 3:51 PM
To: vortex-l
Subject: Re: [Vo]:The process by which the proton decays in LENR


https://phys.org/news/2017-01-physicists-spontaneous-symmetry-optical-microcavity.html
[https://3c1703fe8d.site.internapcdn.net/newman/csz/news/800/2017/physicistsob.jpg]<https://phys.org/news/2017-01-physicists-spontaneous-symmetry-optical-microcavity.html>

Physicists observe spontaneous symmetry breaking in an 
...<https://phys.org/news/2017-01-physicists-spontaneous-symmetry-optical-microcavity.html>
phys.org
Figure 1: An effective potential in the form of a 'Mexican hat' (right) leads 
to spontaneous symmetry breaking. The potentials on the both sides are 
symmetric, but ...





Physicists have observed spontaneous symmetry breaking in an optical 
microcavity, they have demonstrated experimentally the emergence of spontaneous 
symmetry breaking<https://phys.org/tags/spontaneous+symmetry+breaking/> in an 
ultrahigh-Q whispering-gallery microresonator. The Optical whispering gallery 
(WGW) microcavity is the structural form that the Surface Plasmon Polariton 
assumed in LENR. . These whispering gallery 
modes<https://phys.org/tags/whispering+gallery+modes/> are analogous to the 
acoustic resonances in the whispering gallery in St. Paul Cathedral in London.



A critical clue to the role of symmetry breaking in LENR is the observation 
that the application of an electrostatic field catalyzes spontaneous symmetry 
breaking in the WGW via the Kerr effect.

[https://3c1703fe8d.site.internapcdn.net/newman/csz/news/800/2017/1-physicistsob.jpg]

The application of an electrostatic field has been listed as a trigger of the 
LENR reaction in Rossi's patent. When this electrostatic field is applied, the 
WGW produces symmetry breaking which induces a energy transfer between a proton 
and a simultaneous decay in that proton via a symmetry breaking based entangled 
interface.

On Sat, Apr 8, 2017 at 4:06 PM, Axil Axil 
<janap...@gmail.com<mailto:janap...@gmail.com>> wrote:

  1.  The process by which the proton decays in LENR.

Some esoteric process is causing the proton to decay in LENR. This process is 
the root source for the production of energy and sub atomic particles in LENR.


Whatever is causing the proton to decay into strange matter is a new 
unrecognized if not unknown process in physics. This cause is not part of 
current standard model theory. This makes LENR theory doubly hard and 
mysterious. Not only do we need to explain the characteristics of LENR, but 
also LENR thinking gets involved in unrecognized physics that is itself 
ill-defined and speculative and rooted in solving the hardest and still 
unexplained issues in physics. As we go through this string of dots, you will 
get a feel for why LENR theory will not be fully understood for another century.

Gathering the dots together.

Before we attempt to connect the dots relegated to proton decay, we must define 
them and gather them together.

https://phys.org/news/2017-04-insight-math-million-dollar-problem-riemann.html

Solving the Riemann hypothesis

https://en.wikipedia.org/wiki/Riemann_hypothesis


In mathematics, the Riemann hypothesis is a conjecture that the Riemann zeta 
function has its zeros only at the negative even integers and complex numbers 
with real part 1/2. It was proposed by Bernhard Riemann, after whom it is 
named. The name is also used for some closely related analogues, such as the 
Riemann hypothesis for curves over finite fields.

The Riemann hypothesis implies results about the distribution of prime numbers. 
Along with suitable generalizations, some mathematicians consider it the most 
important unresolved problem in pure mathematics.

The complex number system on which this conjecture is based was thought to have 
no meaning or application to any physical property in reality. But this feeling 
has turned out to be wrong.

In 1999, it was suggested by David Hilbert and George Pólya that in the 
nontrivial zeros form a set of real and discrete numbers in the Riemann zeta 
function are just like the eigenvalues of another function called a 
differential operator, which is widely used in physics.

This special newly discovered operator has close ties with quantum physics. The 
special operator in quantum physics is not Parity / Time (PT) symmetric in the 
complex number domain. If it can be shown that the PT symmetry is broken for 
the imaginary part of the operator, then it would follow that the eigenvalues 
are all real numbers, which would finally constitute the long-awaited proof of 
the Riemann hypothesis.


One of the pivotal dots to be connected in proton decay is Parity / Time (PT) 
symmetry breaking.

http://www.europhysicsnews.org/articles/epn/pdf/2016/02/epn2016472p17.pdf

PT-symmetric quantum mechanics is an extension of conventional quantum 
mechanics into the complex domain. (PT symmetry is not in conflict with 
conventional quantum theory but is merely a complex generalization of it.) 
PT-symmetric quantum mechanics was originally considered to be an interesting 
mathematical discovery but with little or no hope of practical application, but 
beginning in 2007 it became a hot area of experimental physics.


The connection between PT symmetry, LENR, Proton decay is whispering gallery 
waves.


https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4830925/

Because of their complex number based quantum behavior, whispering gallery 
waves (WGW) have mysterious properties that are seen in LENR. In whispering 
gallery waves, the complex number system relates to the index of refraction of 
the light contained in WGW type of the optical cavity. When two WGWs are near 
each other, there is a one way flow of energy between them and a translation of 
frequencies associated with that transfer. This energy extraction process is 
unleashed by PT symmetry breaking and the decay that this symmetry breaking 
produces.

The WGW is the structure that gives form to the Surface Plasmon Polariton. Via 
the SPP, the energy extraction process whereby the WPW pulls energy out of the 
proton includes a PT symmetry breaking process. This PT symmetry breaking frees 
the energy content of the proton as SPP breaks the PT symmetry that keeps the 
protons or neutrons from decaying.

The color force and proton stability is based on maintaining CPT stability. 
Here are some old posts that explain this behavior of the color force:

https://www.lenr-forum.com/forum/thread/3736-the-possible-role-of-axions-in-lenr/

and

https://www.lenr-forum.com/forum/thread/3736-the-possible-role-of-axions-in-lenr/?postID=35394#post35394


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