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{{Infobox paper
{{Infobox paper
| title = Laser Stimulation Of Deuterated Palladium: Past And Present
| title = Laser Stimulation Of Deuterated Palladium: Past And Present
| url = [http://www.lenr-canr.org/acrobat/LettsDlaserstimu.pdf Link to paper]
| author = [[Dennis J Cravens]], [[Dennis Letts]]
| author = [[Dennis J Cravens]], [[Dennis Letts]]
| published = 2003
| published = 2003
| journal = [[None]]
| num_pages = 12
| num_pages = 12
}}
}}
'''Read the full paper''' [http://www.lenr-canr.org/acrobat/LettsDlaserstimu.pdf here]


==Abstract==
==Abstract==


A method is disclosed to fabricate a Palladium cathode that can be electrolyzed in heavy water and stimulated with a laser at a predetermined wavelength to produce apparent excess power; the fabrication method involves cold working, polishing, etching and annealing the Palladium prior to electrolytic loading with Deuterium. Loading is accomplished with the cathode sitting in a magnetic field of 350 Gauss. After loading the cathode with Deuterium, Gold is co-deposited electrolytically on the cathode. When a coating of Gold is visible on the cathode, co-deposition is halted and the cathode is stimulated with a low-power laser with a maximum power of 30 milliwatts. The thermal response of the cathode is typically 500 mW with maximum output observed of approximately 1 watt. The effect is repeatable when protocols are followed and has been demonstrated in several laboratories.[[Category:Scientific Paper]]
A method is disclosed to fabricate a Palladium cathode that can be electrolyzed in heavy water and stimulated with a laser at a predetermined wavelength to produce apparent excess power; the fabrication method involves cold working, polishing, etching and annealing the Palladium prior to electrolytic loading with Deuterium. Loading is accomplished with the cathode sitting in a magnetic field of 350 Gauss. After loading the cathode with Deuterium, Gold is co-deposited electrolytically on the cathode. When a coating of Gold is visible on the cathode, co-deposition is halted and the cathode is stimulated with a low-power laser with a maximum power of 30 milliwatts. The thermal response of the cathode is typically 500 mW with maximum output observed of approximately 1 watt. The effect is repeatable when protocols are followed and has been demonstrated in several laboratories.
 
[[Category:Scientific Paper|laser stimulation deuterated palladium past present]]


[[Category:New Energy]]
[[Category:New Energy|laser stimulation deuterated palladium past present]]

Latest revision as of 19:35, 18 July 2026

Scientific Paper
TitleLaser Stimulation Of Deuterated Palladium: Past And Present
Read in fullLink to paper
Author(s)Dennis J Cravens, Dennis Letts
Published2003
No. of pages12

Read the full paper here

Abstract

A method is disclosed to fabricate a Palladium cathode that can be electrolyzed in heavy water and stimulated with a laser at a predetermined wavelength to produce apparent excess power; the fabrication method involves cold working, polishing, etching and annealing the Palladium prior to electrolytic loading with Deuterium. Loading is accomplished with the cathode sitting in a magnetic field of 350 Gauss. After loading the cathode with Deuterium, Gold is co-deposited electrolytically on the cathode. When a coating of Gold is visible on the cathode, co-deposition is halted and the cathode is stimulated with a low-power laser with a maximum power of 30 milliwatts. The thermal response of the cathode is typically 500 mW with maximum output observed of approximately 1 watt. The effect is repeatable when protocols are followed and has been demonstrated in several laboratories.