Solid state tower beacon lamp

H - Electricity – 01 – J

Patent

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Details

H01J 65/00 (2006.01) F21S 8/00 (2006.01) G08B 5/36 (2006.01) H01S 3/09 (2006.01) H01S 4/00 (2006.01) H05B 43/00 (2006.01) H01S 3/08 (2006.01) H01S 3/17 (2006.01)

Patent

CA 2325708

THE CURRENT STATE OF SONOLUMINESCENCE THEORY HAS PROVEN THE EFFECT EXISTS AND HAS BEEN QUANTIFIED TO THE BUBBLE DIAMETER BY MANY MODELS. THE MOST INTERESTING OF THESE MODELS IS THE ONE PROPOSED BY CLAUDIA EBERLAIN, UNIVERSITY OF ILLINOIS, DEPT. OF PHYSICS. 1995. THE POSTULATED MODEL IMPLIES THAT LIGHT EMISSION IS NOT A PRODUCT OF ADIABATIC GAS COMPRESSION, BUT OF WAVEFRONT INTERACTION WITH THE ZERO POINT ENERGY PLENUM. QUANTUM THEORY HOLDS THAT THE VACUUM OR AETHER, CONTAIN INVISIBLE VIRTUAL PHOTONS THAT MANIFEST THEMSELVES AS "QUANTUM FLUCTUATIONS". FURTHERMORE, THAT THE EFFECT KNOWN AS SONOLUMINESCENCE IS THE FIRST OBSERVABLE CONFIRMATION THAT WE CAN PRODUCE RADIATION FROM A VACUUM, OR ZERO POINT ENERGY PLENUM. (ZPE). THE WAVEFRONT GENERATED IN THE VAN DER WAALS DOMAIN INTERRACTS WITH THE ZPE DOMAIN AT SOME POINT IN THE BUBBLE COLLAPSE, AT A PLANCK LENGTH OF 1.6 X 10 -33 CM. THIS WOULD IMPLY THAT THE EMITTED WAVELENGTH OF THE RADIATION IS SOMEHOW RELATED TO THE WAVE FUNCTION OF THE COLLAPSING BUBBLE BOUNDARY OR WALL. ALL KNOWN OBSERVATIONS TO DATE HAVE BEEN GENERATED WITH AUDIO SPECTRUM EQUIPMENT AND TRANSDUCERS IN A WATER MEDIUM. VARIATIONS OF THE EXPERIMENT HAVE BEEN TRIED WITH APPLIED MAGNETIC FIELD, SOUND MODULATION, TEMPERATURE, AND GAS DOPING OF THE WATER MEDIUM, WITH VARIOUS RESULTS, NONE OF WHICH HAVE PRODUCED SIGNIFICANT RESULTS. IF THE POSTULATE IS CORRECT, EMISSION OF PHOTONS SHOULD BE OBSERVED WHEN TWO CONVERGING WAVES INTERRACT IN A SOLID MATERIAL HAVING A HIGH VAN DER WAALS FORCE IN A MATERIAL. THIS RADIATION WOULD HAVE ITS' WAVELENGTH AND AMPLITUDE DETERMINED BY MEDIUM DENSITY AND APPLIED SIGNAL WAVE FUNCTION, PROVIDING THAT THE MEDIUM IS OPTICALLY TRANSPARENT. ORDINARY GLASS WOULD BE AN OBVIOUS CANDIDATE AS A SUITABLE MEDIUM. IT HAS HIGH VAN DER WAAL FORCES, IS OPTICALLY TRANSPARENT AND IS READILY AVAILABLE. IT IS PROPOSED AT THIS TIME, THAT THE EMISSION SPECTRUM CAN BE CONTROLLED VERY ACCURATELY IN A GLASS MEDIUM. THE CONTROL PARAMETERS ARE IN THE COMPLEX FOURIER DOMAIN AS MODULATED DRIVING SIGNAL COMPOSITES. OUTPUT EMISSION WILL BE A FUNCTION OF WAVEFUNCTION OF THE DRIVING SIGNAL TO THE PIEZO-TRANSDUCERS, AS SHOWN IN THE DRAWINGS. THIS COMPOS ITE SIGNAL WILL BE GENERATED IN THE DIGITAL DOMAIN WITH SOFTWARE, AND WILL DRIVE A PAIR OF LINEAR AMPLIFIERS THAT WILL IN TURN, DRIVE THE PIEZO-ELECTRIC TRANSDUCERS. THE TRANSDUCERS ARE ANNULAR IN GEOMETRY WITH AN OPENING IN THE CENTER. A BOLT CAPTURES THE TOP AND BOTTOM TRANSDUCERS WITH THE GLASS LENS BODY IN BETWEEN, PROVIDING A STATIC PRE -LOAD FORCE TO THE GLASS LENS BODY. THIS TECHNOLOGY WILL ALSO FIND IMMEDIATE APPLICATIONS IN IMAGE REPRODUCTION ENGINEERING, COMPUTER DISPLAYS, TELECOMMUNICATIONS MULTIPLEXING, SONG-CHEMISTRY, AND RUNWAY LIGHTING APPLICATIONS.

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