Or whatever happens when fusion occurs within a BEC. Do we know how these behave? What does it mean to "fuse within a BEC?" (if they aren't separate, how do they fuse, or, perhaps more to the point, how do they *not* fuse? How tightly coupled will this BEC be to the confining palladium?
Often it's pointed out that Bose-Einstein Condensates are only known to form at low temperature. But "temperature" refers to relative motion of the component molecules. If for some reason they have no relative motion, they would be at zero temperature. We are not accustomed to thinking of "pockets" of low temperature within objects of higher temperature, but this would be a transient "pocket" of only two molecules. What's the frequency of that? Abd, The cavity breaks isotropy, from our perspective outside the cavity the interior undergoes negative acceleration, we are effectively the paradox twin rushing away from the cavity but instead of doing so on the spatial axis at a right angle to time this method allows us to directly manipulate the speed of time in the cavity. The atoms can remain stationary relative to an observer outside the cavity and still be time dilated in this modified Lorentzian model that yields a relativistic interpretation of Casimir effect. *****. But "temperature" refers to relative motion of the component molecules.******* The overall "temperature" of the entire "cluster" as Miley would call it is lower from our perspective outside the cavity because it exists in a much slower inertial frame. The Paradox twin who remains on earth observes that his twin approaching C appears nearly Motionless . We as observers outside the cavity appear nearly motionless to the hydrogen atoms inside the cavity who see the ratio of long and short vacuum fluctuations unchanged from their perspective even though we outside see the longer wavelengths displaced - they actually twist on the time axis and bend space time for any matter in the cavity producing the fractional or Naudts orbitals. IMHO Fran

