The tread [Vo]:coherent perfect absorption explains how a polariton condensate can be sustained by intense pumping and huge densities of polaritons. The positive feedback of nuclear energy through superabsorbtion takes polariton densities to very high densities and thus high temperatures as that energy is converted entirely to the production of new polaritons. On a polariton BEC is established it has nowhere to go but up in temperature.
On Thu, Oct 16, 2014 at 12:59 PM, Bob Higgins <[email protected]> wrote: > Seems to me that at the temperatures we are talking about (>1000C) that > bulk magnetic effects are probably out of the question. A plasma of Li > would be a conductor and a conductor could be conveyed in a moving magnetic > field. I don't think any motion will occur because of any bulk magnetic > affects - these are all gone at this temperature. > > This temperature also makes it difficult to consider magnetically confined > condensates as Yeong Kim has described. > > > On Thu, Oct 16, 2014 at 10:50 AM, Bob Cook <[email protected]> > wrote: > >> Bob. Amaud, etal-- >> >> I had the same thought as Amaud. The wiring arrangement may be deigned >> to create a magnetic field inside the reactor to align magnetic moments of >> the various entities and facilitate resonant interactions at varying >> probabilities to control the rate of reaction. >> >> Bob Cook >> >> ----- Original Message ----- >> *From:* Arnaud Kodeck <[email protected]> >> *To:* [email protected] >> *Sent:* Thursday, October 16, 2014 8:10 AM >> *Subject:* RE: [Vo]:Engineering and materials issues with high >> temperature hot-cat Lugano demo >> >> Bob, >> >> >> >> Just a thought. I’m not an expert of magnetic confinement of plasma. But, >> the « encaps » might contain a proper wires configuration to close the >> rotating magnetic field formed by the 3 phases current. >> >> >> >> Arnaud >> ------------------------------ >> >> *From:* Bob Higgins [mailto:[email protected]] >> *Sent:* jeudi 16 octobre 2014 17:05 >> *To:* [email protected] >> *Subject:* Re: [Vo]:Engineering and materials issues with high >> temperature hot-cat Lugano demo >> >> >> >> I am pretty sure these "endcaps" are just mechanical supports for the hot >> tube in the middle. They are large alumina outer rings that have been >> filled with a cast-able refractory insulation such as a Vitcast 1200 INS or >> Vitcast 1400 INS-H. They insulate the mounting apparatus from the hot >> radiating tube. They serve no other function. The wires don't go through >> these and they do not seal the ends. They are just supports. >> >> >> >> On Wed, Oct 15, 2014 at 11:32 PM, Eric Walker <[email protected]> >> wrote: >> >> On Wed, Oct 15, 2014 at 9:24 AM, Bob Higgins <[email protected]> >> wrote: >> >> >> >> I believe the large tubes on the end to be thermally insulating supports >> for the hot central 2 cm tube. >> >> >> >> A question that came to me was whether the alumina endcaps could be >> replaced with metal endcaps of a suitable alloy in the context of a larger >> array of devices, in order to provide a suitable path out for the heat to >> be used to generate steam. Another question I have is how much thermal >> load one of these devices can handle. >> >> >> >> Eric >> >> >> >> >> >> >

