http://lenr-canr.org/acrobat/LettsDstimulatio.pdf
If you go to figure 10b and beyond, it looks like a better IR trigger is found at over 20 THz but the important point is that there is a range between 8-21 THz and it may require coherency. But this paper is for deuterium and palladium. For the more important Ni-H experiments (far more important commercially) the range appears to be the same or slightly lower - but that data is not public yet, so we will have to wait to see if this range holds for both. Curiously, this coincident trigger indicates that real fusion is not involved. BTW there is a rumor about that Rossi's next HotCat testing will be done at a thermal range which corresponds quite well to 21 THz. Quite well . as in exact. AR may be far more savvy than his critics can ever imagine. Thus . it is looking to this observer like the role of thermal input in the HotCat is for optical pumping and coherency (or superradiance) in the far IR range at a Rydberg multiple. That range is between 15-21 THz. The role of Ni-62 is unclear in the coherency. When you add up the Rydberg multiple and the coherency/superradiance, this looks like the trigger is for needed for pushing ground state redundancy - and NOT for fusion at all. These photons are simple not relevant to the requirements of fusion. In the case of Pd-D, it is quite possible that helium without gammas has its nexus not in a fusion reaction at all, and not in the form of any real nuclear reaction, but in the form of a static alpha which is the QM result of massive levels of local energy having already been released by electron orbital redundancy, to such an extent that that the alpha appears ab initio in space. This is QM, not thermodynamics - and that kind of strange result should not be a big surprise. To state the implication of it all, this seems to be an elegant blend of Mills' theory with Storms et al, but it will be immediately rejected by both camps - since it involves too many compromises, and neither camp is willing to embrace QM to the full extent necessary. From: Jones Beene Well it is a stretch but 2.466/16 = 15.4125 THz . so if one wanted to force a connection between the two values, then there could be a Rydberg multiple to the degree that the "15 THz" is really rounding off from the slightly higher value :-) From: MarkI-ZeroPoint Once they start playing with variations on a theme (different harmonics/subharmonics), I think it will reveal subtleties which QM could only guess at (thus the probabilistic nature of QM). I hope they report other transition frequencies soon! 2,466,061,413,187,018 hertz 2.466061413187018 * 10^15 hertz 2.47 PetaHertz 3 PetaHz = Near UV, wavelength 100nm, just above the visible spectrum.

