Entangled Waves and the Case of Liquid Energy
In today’s post I confess that the theory that I built upon a circular vibrating sine wave came crashing down, when I tried to formalize it. While the theory looked elegant it suffered from a fatal flaw: the back-and-forth motion required by the theory would soon result in the spherical particles of energy flying everywhere. But the core idea was still good. However, to resolve this problem, I encountered the phenomenon of liquid energy.
The Vibrating Light model assumes that back-and-forth vibration is the primary element the non-linear component of the motion of light. However, when I started looking at the theory more closely, I realized that just introducing a vibrational component doesn’t really explain the different frequencies of light and the inverse correlation of the frequency with the wavelength of light. Asking ChatGPT about it wasn’t really helpful, as any explanation without elementary particles of energy end up sounding weird.
I started thinking about my old theories. I had been working on this issue for a long time, and I had posted multiple posts, such as The Bikau Petanque, or Killing My Darlings, the Third time. A lot of the ideas were almost there, but without the vibrational component the old models didn’t seem to make sufficient sense. But then it hit me: I needed to combine both rotation and vibration to explain how elementary particles of energy move in light. The basic idea is that at least in pulses, the motion in light are two helical arrays of particles of energy reflecting off each other, keeping the particles in helical rotation. Here is an animation illustrating the basic concept:
However, the above model is simplified. The problem is I don’t know how much. I have a very strong intuition the particles within the helix also collide within particles of the same helix, causing back-and-forth (vibrational) reflections as well.
Or even ‘worse’ yet, the rotational component might not be about the hole helix rotating tangentially to the helical array, but perpendicularly to it. This means that while the above model looks cool, it might still be fundamentally wrong but at least pointing to the right direction.
So, is this the final model? A few hours ago, I might have said “probably”, but now I’m inclined towards “probably not”. I know exactly how to fix the issue, but that will be a topic for a new post. Even knowing what to do, creating these animations takes a ridiculous amount of time. And I will only figure out whether my solution was correct when my new model is ready, or at least close to ready.
But at least I got to show this cool animation, even if it doesn’t fully depict reality. Oh, and finally, the reason why I call it liquid energy is that in my model with liquid crystal lignin spheres, rotational motion is correlated with liquids and vibrational motion is correlated with solids. So, light seems to have attributes of both solids and liquids.

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