Speaking of Iwamura, here is what many regard as his most important and neglected paper. The implications have been ignored for years, as he was not a big proponent of fusion to helium, and he had the best equipped lab to find it – if it was there. The paper is extraordinary. Quote: “Judging from these results, we might postulate that excess heat and x-rays are generated by different nuclear reactions.”
http://www.lenr-canr.org/acrobat/IwamuraYcorrelatio.pdf This paper clearly finds the dark matter signature at ~3.6 keV; but the conclusion and the identity of dark matter as “dense hydrogen” (aka pychno, IRH, etc) is not pursued. Iwamura’s was way ahead of his time – but his methods are top flight. See figure 4, page 6 – where the x-ray signature in the low keV range is orders of magnitude higher than high keV (exponentially higher). Excess heat generation has NO statistical relation to x-rays however, which is most important clue as to the process. It indicates that x-ray emission is part of a two stage process, the first of which does not supply the gain even though x-rays are emitted ! And there are NO gamma rays of the MeV variety (fusion to helium) in a situation where they would be easily detected if present. The result this ties into Parkhomov/Rossi but in a way which is complex, involving dark matter, defined as the lowest Rydberg state of hydrogen – having this signal (signature) in the low x-ray spectrum. The tight radius of this species is important for what happens later in a two-step process (or 3). The pathway to gain involves forcing hydrogen or deuterium into the dense state, probably using SPP in the case of Parkhomov but not Iwamura, following which the dense hydrogen interacts with another nucleus such as lithium-6. In the case of Iwamura, dense deuterium interacts with oxygen to form fluorine. Helium and D+D fusion are not seen – which is one reason that this paper could have been ignored. He did use lithium, but this report was done during the time period when commercial lithium was depleted in Li-6. As for the message as it relates to dogbone experiments – as you can see from the timing: forming a population of dense hydrogen (or deuterium) as a first step appears to be endothermic or energy neutral, yet having x-ray production. Thus the need for continuing heat input and an extended ageing period – after which the magic happens, once a population of active species is present. In the case of Parkhomov, exotherm may come from the lithium interaction – which could be something other than fusion. It is never simple but without gamma radiation, fusion is unlikey. From: Frank Acland This is an original English version released by Clean Planet inc. http://cleanplanet.co.jp/news/en/15.03.30%20Clean%20Planet%20-%20Press%20release.pdf Jed Rothwell <[email protected]> wrote: Clean Planet Inc. and Tohoku University are launching “Clean Energy Research Lab” at Tohoku University on April 1st, 2015. The project will be led by Yasuhiro Iwamura. I believe he is leaving Mitsubishi to do this.

