Hi, thanks for your reply. Well, according to this conjecture, the asymmetric acceleration force which Woodward is trying to measure through his experimental apparatus is not being achieved by any expulsion of conventional propellant mass, nor is it even a photon rocket.
The exact mechanism for momentum exchange is left unstated, however it's being claimed that momentum would be exchanged by the system with the rest of the universe.
But as you say, momentum exchange cannot be done for free - it's just that it's being claimed that it can be done without expulsion of propellant mass.
The cyclical oscillation of the change in internal energy means a corresponding cyclical oscillation of change in mass. This is then sychronized with mechanical displacement oscillation, which should result in an asymmetric net force to achieve acceleration.
The new paper however claims that using an oscillating magnetic field instead of a mechanical oscillator could improve upon the measured results.
Here are some graphs lining up various relevant parameters vs time:
(Click to enlarge)
You'll notice on the bottom 2 graphs the
red curves which show the purported additional performance advantage of magnetic vs mechanical oscillation. The claim is that there is an increase in overall momentum transfer and acceleration. This claim is based on the different coupling that happens under a magnetic field as compared to direct mechanical contact. This should result in any mass fluctuations being more discernible and visible to measurement, with an improved signal-to-noise ratio.
I'd like to know if there are any opinions on how the experimental setup could be further improved. Whether for the purpose of proof or disproof, it would be nice to know how the experimental apparatus could be optimized to make any mass fluctuations and any resultant net accelerative force as apparent as possible.