Why doesn't LENR happen all the time?

I would appreciate your attention to a theory of LENR that covers many of
the characteristics seen in LENR experiments.

LENR is a reaction that involves the formation of an electromagnetic Black
Hole to combine two dissimilar particles and or atoms together in the same
volume of space time.

The kind of LENR that does not demonstrate neutron and gamma emissions uses
a special type of entanglement to connect two or more particles and/or
atoms involved in the generation of the reaction. But that entanglement is
a special  kind of entanglement.  It is the Multiboundary entanglement that
involves multiple particles and atoms as produced by a Black Hole.

http://arxiv.org/abs/1406.2663#

Multiboundary Wormholes and Holographic Entanglement

Since the Dark Mode Surface Plasmon Polariton(SPP) is a acoustic black
hole, it produces this special type of entanglement.  So there is
a special linkage between SPPs and LENR involving Multiboundary
entanglement.

In order for radiation free LENR to occur, SPPs must form as the catalysts
of the LENR reaction.

As a second LENR causation mechanism, the high powered electromagnetic SPP
can also produce a monopole magnetic beam like a rotating gravitational
black hole and that beam can grow strong enough to instantiate  mesons from
the vacuum. These mesons and their decay products (muons and Pions)
can catalyze nuclear reactions involving nearby atoms such as muon based
fusion and fission.

Muon induced fission

Prompt muon-induced fission: a sensitive probe for nuclear energy
dissipation and fission dynamics

http://arxiv.org/pdf/nucl-th/0403087v1.pdf

LENR can result in the fission of heavy elements: uranium and thorium as a
result of Muon induced fission. Neutrons are not required to generate
fission in heavy elements. Because these elements are also connected to the
SPP by entanglement, the LENR reaction proceeds without neutron and
gamma emission and immediately stabilizes the radioactive byproducts of
the fission reaction.

On Sun, Sep 13, 2015 at 6:12 PM, Axil Axil <[email protected]> wrote:

> http://arxiv.org/abs/1406.2663#
>
> Multiboundary Wormholes and Holographic Entanglement
>
> Orthodox science has just come up with a new type of entanglement to
> explain how black holes can radiate Hawking radiation.
>
> Many different types of particles/atoms can all be entangled by a
> multi-party mechanism.
>
> On Sun, Sep 13, 2015 at 10:51 AM, Bob Cook <[email protected]>
> wrote:
>
>> I think Axil has stumbled upon an explanation of the formation of Ni-62
>> (which has been reported but with extreme doubt  from many including some
>> Vorts).
>>
>> I have thought that the understanding of the extent of a coherent QM
>> system (entangled per Axil’s terms) is a key.   And the tendency of  such a
>> system to go to a lower potential by giving up this energy to thermal
>> energy consistent with theory that entropy increases is also important in
>> understanding the transformation of a coherent (entangled) system.
>>
>> Ni-62 is such a target for a system that can get to that configuration.
>> In the nano structure Axil has suggested all the constituents are present.
>>
>> This complex nano system seems to fit the bill, including a good high
>> temperature lattice of Ni to absorb and transmit thermal  energy.
>>
>> Bob Cook
>>
>> PS:  I agree with Higgins that the current standard model has a lot of
>> hand waving with many empirical constants for fitting things together.
>> Holston was right on about such a miss-placed focus in modern phyics.
>>
>>
>>
>> *From:* Axil Axil <[email protected]>
>> *Sent:* Friday, September 11, 2015 2:16 PM
>> *To:* vortex-l <[email protected]> *iggin*
>> *Subject:* Re: [Vo]:time, separation and neutron tunneling cross section
>>
>> If we have something that quantum mechanically entangles two dissimilar
>> atoms, then these two atoms become the same combined atom at the same
>> location in space. Will their nuclei combine in a fusion reaction?
>>
>> https://www.sciencenews.org/article/everyday-entanglement
>>
>> In the Lugano test, it looks to me like the 100 micron nickel particle
>> covered with lithium became entangled as a single quantum system. All the
>> nickel and all the lithium became involved in a nuclear fusion reaction,
>> Yes all N atoms in that particle and the lithium that covered it...both
>> Nickel and Lithium...transmuted into pure Ni62 in a single fusion reaction
>> through entanglement.
>>
>> This is the only way that particle could have formed through
>> transmutation.
>>
>> On Fri, Sep 11, 2015 at 3:22 PM, Bob Higgins <[email protected]>
>> wrote:
>>
>>> Why the strong force behaves this way - repulsion at close distance, and
>>> then switching to strong attraction with very short fall-off - is a core
>>> mystery of quantum mechanics and nuclear theory.  That having been said,
>>> Don Hotson's analysis of the Dirac's equation as a TOE (theory of
>>> everything) has a very plausible explanation of the strong force,
>>> predicting both the very close repulsion and the strong attraction.  This
>>> part of the description is in his 2nd paper, but you will need to read his
>>> first paper to understand the second.
>>>
>>> The strong attraction is an exchange force - sort of like a chemical
>>> bond of electrons, but with the components of the nucleon being shared
>>> between two nucleons.  This sharing can only happen at a very small
>>> distance.  The exchange force reminds me of the force between a magnet and
>>> its iron keeper - extremely strong at short distance and very weak at
>>> longer distance.  Not sure this is a good physics analogy, but it comes to
>>> mind as I think about it.
>>>
>>> I find Hotson's analysis of what Dirac's equation implies to be very
>>> compelling.  It really throws conventional quantum mechanics back on its
>>> heels!  I have his papers, but there have been links to them several times
>>> in Vortex.
>>>
>>> Bob Higgins
>>>
>>>
>>> On Fri, Sep 11, 2015 at 9:10 AM, David Roberson <[email protected]>
>>> wrote:
>>>
>>>> But why does the force fall off with such a high power relationship
>>>> with respect to separation?  If there are more than 3 spatial dimensions
>>>> then some of the acting flux might leak off into those mystery regions.
>>>> Otherwise, I am having a difficult time visualizing why it is not limited
>>>> in a manner similar to that seen with electromagnetic fields.  Of course,
>>>> if the effects are explained as a result of experiments then one is left
>>>> with this question unanswered.
>>>>
>>>> Are we using data that is generated by curve fitting to observations as
>>>> compared to understanding the true physical phenomena underlying those
>>>> observations?  If true, then there is a limited opportunity available to
>>>> anticipate new, so far unseen, forces that might come into play under new
>>>> conditions.   LENR might be one of a family of possibilities waiting to be
>>>> discovered as better instrumentation is developed.  Of course, serendipity
>>>> has its place in physics as it has always led to most of the major
>>>> discoveries.  It has been said, "I'd rather be lucky than good."
>>>>
>>>> Dave
>>>>
>>>>
>>>>
>>>> -----Original Message-----
>>>> From: Eric Walker <[email protected]>
>>>> To: vortex-l <[email protected]>
>>>> Sent: Fri, Sep 11, 2015 10:32 am
>>>> Subject: Re: [Vo]:time, separation and neutron tunneling cross section
>>>>
>>>> On Fri, Sep 11, 2015 at 8:47 AM, David Roberson <[email protected]>
>>>> wrote:
>>>>
>>>> Does anyone know why this interaction varies as the sixth power of
>>>>> separation?
>>>>
>>>>
>>>> Just to clarify -- the nuclear force is the one that drops off with the
>>>> sixth power (per Robin).  The speculative relationship between the
>>>> "interaction half-life" and the separation distance is unknown, although it
>>>> would be great to know what it is.  (I was just providing an example of
>>>> what it might be.)
>>>>
>>>> At the scale of nucleons the strong force, called the residual strong
>>>> force, or nuclear force, in this context, is what is left over from the
>>>> interaction of quarks and gluons within nucleons.  The nuclear force is
>>>> effective at 1 fm, and the nucleons are bound together within the nucleus
>>>> through the exchange of mesons, which are quite massive.  The more massive
>>>> the force carrier, the shorter its range.  In contrast to the residual
>>>> strong force, the force carrier of the strong force is the gluon, which is
>>>> massless and interacts with quarks.  (Credit for this goes to Wikipedia.)
>>>>
>>>> (I wonder if this means the range of gluons is far, and if not, why
>>>> not.)
>>>>
>>>> Eric
>>>>
>>>>
>>>
>>>
>>
>>
>
>

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