Very possible, The broadened emissions are from the hydrino contribution, the 
hydrogen's spatial motion has already been reduced by nano confinement  and 
then longer vacuum wavelengths are suddenly suppressed by the local geometry. 
My posit is that these fractional orbits are negative inertial frames where 
spatial motion is already effectively zero but the quotient of V^2/C^2 is 
further reduced because the unit of time is suppressed proportional to the 
vacuum wavelengths.  Naudt's paper called it relativistic hydrogen but perhaps 
inverse relativistic would have been more appropriate because from our 
perspective the hydrogen in a cavity ages faster while hydrogen ejected from 
the suns corona ages slower. As in any relativistic frame the local observers 
are unaware of time dilation but radiation emitted from f/h at the normal 
frequency in a negative inertial frame will translate to longer wavelengths as 
dilation reduces and orbits becomes less fractional. The frequency appears 
lower  when we observe it in our macro inertial frame since space time has 
stretched from the negative inertial frame where the radiation originated. 
That's my story and I'm sticking to it :_)
Fran
_____________________________________________
From: Jones Beene [mailto:[email protected]]
Sent: Monday, June 17, 2013 12:41 PM
To: [email protected]
Subject: EXTERNAL: RE: [Vo]:Venus - high and dry - why ?



            As illogical as it may sound on first blush, can any electrically 
powered thermal device (looking pretty much like a tube furnace) function in 
such a way so as to convert a hot blackbody surface into a cooler (but still 
quite hot) coherent infrared interior ... with superradiant resonance at 15 THz?

      To make it a little clearer where this suggestion is going - imagine a 
stainless steel tube sealed at both ends, so as to operate simply as a cavity 
resonator for unfocused infrared radiation (instead of operating as a laser 
emission tube). Imagine it is a version of a gas-phase optically pumped 
non-focused IR laser -- in which the gas is a hydride, perhaps KH, operating at 
partial vacuum. Here is a predecessor design.

      
http://proceedings.spiedigitallibrary.org/proceeding.aspx?articleid=1006553

      The optical pumping mechanism is supplied by hotter IR radiation from a 
superabsorbent re-emitter, such as a silicon-carbide exterior tube, with  the 
inner stainless tube centered with minimal contact. That silicon-carbide 
superabsorbent re-emitter tube is itself heated by a resistence heater at over 
800 C. It remains hotter at its peak temperature than the interior tube at 447 
C because the interior tube is absorbing/re-emitting predominantly at 15 THz or 
20 micron radiation.

      Thus the net effect is that the inner superradiant tube emits extremely 
intense radiation but with a lower peak. This is similar to Randell Mills 
"emission-line broadening" but in IR.

      These dynamics would result in a skewed emission curve for the external 
tube as well. Emission line broadening allows massively more net energy to be 
emitted from a source at a lower effective peak temperature - compared to 
blackbody assumptions. Thus the HotCat could be even more energetic than 
imagined, based on the technique used to measure it - which assumed no line 
broadening

      Possible, or no?

      Jones






Reply via email to