vid lecture of their research!
An acoustic super-radiance mechanism involving information transfer is proposed as an additional candidate to solve the binding problem and to achieve acoustic holography. Our results can be applied to achieve holographic memory storage and information processing in QBD. [quantum brain dynamics]
Nishiyama, A.; Tanaka, S.; Tuszynski, J.A. Quantum Brain Dynamics: Optical and Acoustic Super-Radiance via a Microtubule. Foundations 2024, 4, 288-305.
https://www.mdpi.com/2673-9321/4/2/19
Memory in this approach is represented as the vacua emerging in the breakdown of rotational symmetry of water dipoles where water dipoles are aligned in the same direction and memory recall processes are represented as excitations of a finite number of incoherent photons [25,26 ]. "
this is what Puharich first proposed. It's hilarious how he gets ignored - but he did unpublished private-military research.
Since the modulation of the water density affects the transmittance of light, acoustic holography might be tightly correlated with optical holography
"we derive an acoustic super-radiance solution in our model."
Hey how come I don't get cited? hahahahaha. Pretty sure I have emailed Jack Tuczynski.
Photon fields couple with the flow of charge, while phonon fields couple with the gradient of density of charged bosons.
Water can be viewed as a source of both coherent light and sound, while it is also the potential medium for memory storage. Super-radiance, therefore, can be regarded as the mechanism for the formation of coherent light and sound in holographic information processing involving both light and sound. Interference patterns of light can serve as storage and processing of information [30 ,34 ,58 ]. Water media are adopted for holographic information processing and memory. Acoustic super-radiance introduced in this paper is proposed as the mechanism for information processing and memory formation by coherent sound waves. Since sound waves induce density gradients of water molecules, the transmittance of sound will change due to the density gradients in holograms of water.
the paper relies on Emilio del Giudice. So I sent Jack Tuszynski the below email:
Andrija Puharich derived a similar water quantum vacuum photon memory
the density of water molecules in liquid state.
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