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| image = Robert E Godes 854.jpg
| image = Robert E Godes 854.jpg
| alt = Robert E. Godes
| alt = Robert E. Godes
| birth_date = {{birth date|1962|00|00|mf=y}}
| birth_date = {{birth year and age|1962}}
| fields = [[Engineer]], [[Entrepreneur]]
| fields = [[Engineer]], [[Entrepreneur]]
| residence = EmeryVille, CA, United States
| residence = Emeryville, California, United States
| known_for = [[New Energy]], [[Cold Fusion]]
| known_for = [[New Energy]], [[Cold Fusion]], [[LENR]]
}}
}}


I have been a practicing entrepreneur/scientist/engineer since 1985 when I started designing equipment for companies in Cleveland Ohio. I study a number of areas from Nanotec to Astrophysics with the ability to draw on information across the range. This broad range of study allowed me to construct a workable theory of the incorrectly defined phenomenon of ?Cold Fusion?. The theory shows that it is possible to produce a controlled fusion reaction, on demand across an entire core using protium or simple hydrogen. Work is progressing nicely and Profusion Energy is currently working on getting the backing of PhD's by providing access to the full theory and experimental data to back up the theory. The next step is an experiment to run the system at elevated temperatures and pressures. This will determine easily achievable energy densities and suitable markets.
'''Robert E. Godes''' is an American [[electrical engineer]], inventor, and entrepreneur. He is the founder, president, and chief technology officer of Brillouin Energy Corporation, a company based in the San Francisco Bay Area that is developing a [[low energy nuclear reaction]] (LENR) technology commonly described in the popular press as [[cold fusion]]. Godes is the originator of what he terms the "Controlled Electron Capture Reaction" (CECR) and of an accompanying "Quantum Fusion Hypothesis" intended to explain the phenomenon.


==Education ==
==Biography==


Ohio Northern University&nbsp;BSEE, 1983&nbsp;- 1988<br />
Godes earned a Bachelor of Science degree in electrical engineering from [[Ohio Northern University]]. He began his professional career in the mid-1980s, designing equipment for manufacturing companies in the Cleveland, Ohio area, and went on to accumulate more than thirty years of experience as a technical designer, electrical engineer, and inventor. Much of his work focused on power distribution and the electric utility industry, and his self-described areas of study span applied science, several engineering disciplines, control systems, programming, electrochemistry, and areas of physics ranging from condensed matter to astrophysics.
 
According to accounts of his career, Godes became interested in the cold fusion controversy in 1992, after a colleague told him about the 1989 experiments of [[Martin Fleischmann]] and [[Stanley Pons]]. He subsequently began developing his own model of the underlying process and, in the 2000s, founded a company (initially operating as Profusion Energy) to pursue the research, later reorganized as Brillouin Energy Corporation.
 
==Scientific contributions==
 
Godes is the primary inventor of Brillouin Energy's "Hydrogen Hot Tube" (HHT) reactor and its "Q-Pulse" electrical control technology. He proposes that a specific electrical pulse applied to a metal (such as nickel) lattice loaded with hydrogen can stimulate what he calls a Controlled Electron Capture Reaction, in which a proton and an electron combine to form a neutron. In his model, the newly formed neutron is captured by nearby nuclei, and the resulting isotopic changes release energy as heat, with only small amounts of helium reported as a by-product. He describes the associated theoretical framework as the "Quantum Fusion Hypothesis," and presented it publicly in a 2008 abstract.
 
Godes argues that this mechanism can, in principle, use ordinary hydrogen (protium) rather than the deuterium emphasized in much earlier cold fusion work, and that the reaction can be controlled electronically. Brillouin Energy has reported measurements of excess heat from its reactors and has described independent testing arrangements, including work associated with SRI International.
 
The claims made by Godes and Brillouin Energy fall outside the scientific mainstream. Conventional physics holds that nuclear reactions of this kind cannot occur at the low temperatures and pressures involved, and cold fusion and LENR research generally remain unaccepted by most of the physics community, in part because of difficulties in independently reproducing reported results. Godes and his collaborators continue to present their findings at LENR conferences and to characterize the work as ongoing engineering and commercialization efforts.


==Abstracts==
==Abstracts==


* 2008 - "[[The Quantum Fusion Hypothesis]]"  
* 2008 - "[[The Quantum Fusion Hypothesis]]"
 
==External links==
 
* [https://brillouinenergy.com/ Brillouin Energy Corporation]
* [https://brillouinenergy.com/leadership Brillouin Energy leadership page]
 
[[Category:Scientist|Godes Robert]]
[[Category:Worldwide List of Dissident Scientists]]


[[Category:Scientist]]
[[Category:Cold Fusion]]

Latest revision as of 16:30, 20 July 2026

Robert E. Godes
Robert E. Godes
Born1962 (age 63–64)
ResidenceEmeryville, California, United States
Known forNew Energy, Cold Fusion, LENR
Scientific career
FieldsEngineer, Entrepreneur

Robert E. Godes is an American electrical engineer, inventor, and entrepreneur. He is the founder, president, and chief technology officer of Brillouin Energy Corporation, a company based in the San Francisco Bay Area that is developing a low energy nuclear reaction (LENR) technology commonly described in the popular press as cold fusion. Godes is the originator of what he terms the "Controlled Electron Capture Reaction" (CECR) and of an accompanying "Quantum Fusion Hypothesis" intended to explain the phenomenon.

Biography

Godes earned a Bachelor of Science degree in electrical engineering from Ohio Northern University. He began his professional career in the mid-1980s, designing equipment for manufacturing companies in the Cleveland, Ohio area, and went on to accumulate more than thirty years of experience as a technical designer, electrical engineer, and inventor. Much of his work focused on power distribution and the electric utility industry, and his self-described areas of study span applied science, several engineering disciplines, control systems, programming, electrochemistry, and areas of physics ranging from condensed matter to astrophysics.

According to accounts of his career, Godes became interested in the cold fusion controversy in 1992, after a colleague told him about the 1989 experiments of Martin Fleischmann and Stanley Pons. He subsequently began developing his own model of the underlying process and, in the 2000s, founded a company (initially operating as Profusion Energy) to pursue the research, later reorganized as Brillouin Energy Corporation.

Scientific contributions

Godes is the primary inventor of Brillouin Energy's "Hydrogen Hot Tube" (HHT) reactor and its "Q-Pulse" electrical control technology. He proposes that a specific electrical pulse applied to a metal (such as nickel) lattice loaded with hydrogen can stimulate what he calls a Controlled Electron Capture Reaction, in which a proton and an electron combine to form a neutron. In his model, the newly formed neutron is captured by nearby nuclei, and the resulting isotopic changes release energy as heat, with only small amounts of helium reported as a by-product. He describes the associated theoretical framework as the "Quantum Fusion Hypothesis," and presented it publicly in a 2008 abstract.

Godes argues that this mechanism can, in principle, use ordinary hydrogen (protium) rather than the deuterium emphasized in much earlier cold fusion work, and that the reaction can be controlled electronically. Brillouin Energy has reported measurements of excess heat from its reactors and has described independent testing arrangements, including work associated with SRI International.

The claims made by Godes and Brillouin Energy fall outside the scientific mainstream. Conventional physics holds that nuclear reactions of this kind cannot occur at the low temperatures and pressures involved, and cold fusion and LENR research generally remain unaccepted by most of the physics community, in part because of difficulties in independently reproducing reported results. Godes and his collaborators continue to present their findings at LENR conferences and to characterize the work as ongoing engineering and commercialization efforts.

Abstracts

External links