http://www.gizmag.com/high-temperature-superconductor-aluminum/36317/

ow the USC team led by professor Vitaly Kresin has discovered hints of yet
another family of superconductors which work at relatively high
temperatures. Specifically, they found out that while single atoms of
aluminum only turn superconductive at very low temperatures (around 1 K),
so-called "superatoms" (clusters of evenly spaced atoms that behave as a
single atom) of aluminum turn superconductive at much higher temperatures,
around 100 K.

Superconductivity takes place when so-called Cooper pairs
<http://en.wikipedia.org/wiki/Cooper_pair> form within a material. These
are pairs of electrons that are very faintly attracted to each other and
activate a mechanism whereby the electrons don’t veer off course, and
therefore lose heat, whenever they bump into an imperfection within the
material. Because the attractive force between the electrons, which happens
only under certain conditions, is so weak (two electrons would normally
repel each other), even a small amount of external energy (which could be
given off in the form of heat) can upset this equilibrium. This is why
superconductors only work at very low temperatures.

Kresin and team built a series of aluminum superatoms between 32 and 95
atoms large. For superatoms containing 37, 44, 66 and 68 aluminum atoms,
the scientists found evidence that Cooper pairings were taking place,
turning the material into a superconductor.

On Sun, Sep 6, 2015 at 3:10 PM, Bob Higgins <[email protected]>
wrote:

> Note:  Most of the references for Rydberg matter and LENR are not
> referring to f/H or IRH - they are referring to large ensembles of atoms in
> a BEC that can behave in a single quantum state.  Piantelli believes
> Rydberg matter to be part of his theory of how Ni-H works - wherein the
> surface grains each become a BEC - even if only short-lived - and the
> grains must be properly sized for BEC formation.
>
> I am not saying that f/H or IRH or hydrino are not involved in LENR, only
> that these are rare references in most of the LENR literature.
>
> Bob Higgins
>
> On Sun, Sep 6, 2015 at 12:16 PM, Jones Beene <[email protected]> wrote:
>
>> *From:* Axil
>>
>> Ø  … Aluminum monoxide can form rydberg matter just like potassium can
>> because the valance electron configuration between the aluminum compound
>> and the potassium is the same.
>>
>> It is fair to assume that in all of our discussions about “dense
>> hydrogen” where the electron is in a stable redundant ground state – that
>> all of the various terms given to the species are more-or-less synonymous,
>> including: hydrino, f/H (fractional hydrogen), IRH (inverted Rydberg
>> hydrogen), DDL (deep Dirac level), pychno-hydrogen, femtohydrogen, virtual
>> neutron, Dark Matter hydrogen, metallic hydrogen, sub-orbital hydrogen… and
>> probably a few others.
>>
>

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