DARPA invests in exploring electromagnetic drive engine: replacing chemical fuel

Mike McCulloch, a professor of physics at the University of Plymouth in the United Kingdom, plans to use the $ 1.3 million in funding from the US Department of Defense's Advanced Research Projects Agency (DARPA) to prove that his quantized inertia is not just generated in the online physics forum debate A kind of thinking spark. McCulloch considers himself to quantify inertia and Unruh radiation (Unruh radiation, Anru effect is a prediction:

An accelerating observer can observe the black body radiation that the inertial observer cannot see, that is, the accelerating observer will find himself in a warm cosmic background. ) 'S idea can trigger a new type of rocket engine design that does not require chemical fuel, but instead converts light into thrust. The DARPA engineers also think that McCulloch's idea may be a good idea.

Mike Fiddy, the head of the DARPA Defense Science Office, the light and matter interaction project, claimed: "There are already more and more global players in the space field. DARPA is trying to explore in depth how to move objects in a more efficient and versatile form. McCulloch believes that the imbalance of the Anlu effect can be used to generate a more energy-saving driving force.

In a previously published paper, McCulloch used his own theory of quantitative inertia to solve the galaxy rotation (completely aside dark matter) and the thrust generated by the electromagnetic drive engine. The electromagnetically driven engine is a rocket engine that NASA tries to develop and requires less chemical fuel. According to the inventor of the electromagnetic drive engine, this engine emits microwaves from one end of an irregularly shaped container to the other end, and uses the different radiation pressures to generate thrust. However, at the beginning of this year, a study also questioned whether this design would be effective.

McCulloch said: "I think the electromagnetic drive engine is a manifestation of inertia quantification. Different experimental settings may be able to generate more powerful thrust." DARPA grants will be used for more theoretical research before being used for experiments. McCulloch said: "The money will first allow me to hire a postdoctoral fellow." With the help of postdoctoral researchers, McCulloch plans to continue to improve his theory of quantitative inertia. He plans to try to create a digital model to make this theory fully predictable.

After 18 months of theoretical refinement, these funds will help fund two experimental teams in Germany and Spain, which will establish experiments to explore this thrust theory. If the experiment eventually succeeds as McCulloch predicted, the researchers will look for ways to enhance this thrust.

McCulloch hopes to continue to use his own theory to explain and understand observable astronomical data at different stages of research. McCulloch said: "I think the power of this theory is that it can explain many things of different sizes, whether it is at the cosmic level or the laboratory level."

McCulloch's theory claims that the interpretation of cosmic phenomena is more accurate than the standard model, which is based on the existence of dark matter. His theory also encountered opposition from some physicists. McCulloch said: "Many people who believe that dark matter is against my theory. They don't like this theory at all, because many scientists and universities have received a lot of money and built expensive equipment to find dark matter."

But even though mainstream physicists do not agree with McCulloch's theory, DARPA has developed enough interest in it. Fiddy said: "What we are interested in is that a deeper understanding of the interaction between electromagnetic waves and matter will lead to more new theories. When these new ideas are related to the DARPA project and are testable, DARPA may support them. "

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