The latest presentation from Lattice Energy -- "Powering the World to a Green LENR Future" - April 11 2013 http://www.slideshare.net/lewisglarsen/powering-the-world-to-a-green-lenr-future-lattice-energy-llcapril-11-2013
-- is a less technical exposition of W-L theory which includes a number of observations probably of interest, even to proponents of other theories. I found the following citations especially interesting: (Slide 18) "Experimental Study of High Field Limits of RF Cavities" http://www.hep.uiuc.edu/LCRD/LCRD_UCLC_proposal_FY05/2_49_Seidman_Norem.pdf [EXCERPT: Another interesting feature of this mechanism is that the power densities involved are enormous. The numbers can be obtained from the values we measured for field emitted currents, electric field, the emitter dimensions, and volume for transferring electromagnetic field energy into electron kinetic energy[2]. Combining these gives, (10 GV/m)(10−7 m)(1 mA)/(10−7m)3= 1021 W/m3, a value that seems to be greater than all other natural effects, except perhaps Gamma Ray Bursters [12]. The power density is comparable to nuclear weapons. Michelson and Millikan noticed the hot sparks in 1905,...] Other slides show huge nano-wire/cavity focusing of e-m field amplitudes. Also cited (slide 41) is: "A neutron diffraction study of macroscopically entangled proton states in the high temperature phase of the KHCO3 crystal at 340 K" http://arxiv.org/abs/0807.1386 An example of a high-temperature 'Schrodinger's cat'. Related papers on macroscopic quantum superpositions by the same authors: "Evidence of macroscopically entangled protonsin a mixed isotope crystal of KH_pD_(1-p)CO_3" http://hal.inria.fr/docs/00/44/62/16/PDF/Fillaux.pdf http://arxiv.org/abs/1001.2150 "Where are Protons and Deuterons in KHpD1-pCO3? A Neutron diffraction study" http://arxiv.org/abs/0903.4032 http://hal.archives-ouvertes.fr/docs/00/36/96/97/PDF/Fillaux.pdf "The macroscopic quantum behavior of protons in the KHCO_3 crystal: Theory and experiments" http://arxiv.org/abs/0903.4033 "Nonlocal protons and deuterons opposed to disorder: a single-crystal neutron diffraction study of KH0.76D0.24CO3 and a theoretical framework" http://arxiv.org/abs/0807.1388 "A neutron diffraction study from 6 to 293 K and a macroscopic-scale quantum theory of the hydrogen bonded dimers in the crystal of benzoic acid" http://arxiv.org/abs/1111.0662 "Neutron scattering studies of K$_3$H(SO$_4)_2$ and%2

