I have addressed this issue. The power of the magnetic field produces
entanglement of the particles undergoing the nuclear reaction, and the
source of the magnetic field which is the dark mode polariton soliton. The
nuclear energy is teleported from the nuclear energy production site to the
storage location which is the SPP. From the SPP, super absorbsion
distributes the nuclear energy to the other members of the polariton BEC.

I do not know what the maximum energy carrying capacity of the teleport
transfer path happens to be.

This teleportation mechanism supports elimination of radiation and
stablizes isotopes produced by the nuclear reaction.

see

http://www.e-catworld.com/2015/05/19/my-opinion-regarding-rossicook-reaction-theory-axil-axil/

and

http://www.e-catworld.com/2015/04/26/a-theory-to-address-the-mysteries-of-lenr-axil-axil/





On Sat, Jun 20, 2015 at 7:00 PM, <[email protected]> wrote:

> In reply to  Axil Axil's message of Sat, 20 Jun 2015 15:14:07 -0400:
> Hi,
> [snip]
> >To simplify all the dipoles acted like a single huge dipole. The input
> power that comes into the reactor feeds all the dipoles equally. the
> magnetic field that is produced by the dipoles and output are all the same.
> All the nuclear energy that the dipoles produce is shared equally among all
> the dipoles. The dipoles release the same amount of heat like there was a
> single huge dipole instead of many individual dipoles performing the same
> dance step.
>
> I think that superradiance is just a timing stimulus. It's essentially an
> externally forced vibration that just happens to be at the natural
> frequency of
> the oscillator, so it effectively ensures that all the oscillators emit at
> the
> same time. The reason it goes as N^2 is because each oscillator
> contribution
> adds to the strength of the whole increasing the intensity, and creating a
> stronger external forcing field, which in turn causes more oscillators to
> contribute. It's a positive feedback scenario.
>
> However the interaction between an individual oscillator and the field
> isn't
> very strong. IOW the overall field isn't very strong. So I wouldn't expect
> it to
> be able to accept something with the energy density of a nuclear reaction.
>
> More likely IMO is that the Li fission just produces fast alpha particles
> which
> thermalize in a solid in less distance than the thickness of a human hair.
> Regards,
>
> Robin van Spaandonk
>
> http://rvanspaa.freehostia.com/project.html
>
>

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