Quantum exploitation of photons for acoustic detection leverages the quantum properties of light (photons)—such as entanglement, squeezing, superposition, and weak measurements—to sense acoustic waves (sound/vibrations, or their quantum counterparts: phonons) with sensitivity and precision that surpass classical limits. This field bridges quantum optics and quantum acoustics, enabling ultra-sensitive detection of minute mechanical displacements, strains, or pressure changes.
This could theoretically be applied from a network of space-based laser emitters to detect the entangled variations of coherence and combine mutple such entangled phonon-based signatures to detect and track in ocean basins, knowing that phonon-based detection would not suffer from the inherent issues of lightwave photonic detections at depth. A "Hail Mary" solution independent of propagation loses...
Consider a Starshield network using multi-sensor fusion to vector enhanced quantum LIDAR phonon surveillance and tracking. Once acquired the targeted vessel would be tracked using AI-sensor fusion to facilitate precise targeting and war shot vertical hypersonic weapon delivery.
Rick, I was always impressed by your intelligence and what you have provided here is a very interesting read and makes one wonder where its headed.
I promise I'm not trying to be cute with my next comment when I say your writings on this subject were well done and thought provoking, but i didn't understand a word of it. Doesn't mean I didn't enjoy the read, Just means its a level of SURTOPS beyond my comprehension.
Hey John,
I wasn't trying to do anything more than share where ocean surveillance might be heading... and not that far in the future. I'll admit that when I first started doing some research I had a huge learning curve just to grasp the idea of near instant transmission from source to operator assisted A.I. recognition. The whole scenario I was familiar with was made instantly obsolete by technology leaps. But it does present new concepts that point toward robotic submersible target engagement. We'll never know how fast times are changing, but they have already started.
Cheers John
R
John,
I was just lying here thinking about the exploitation of "ambient" sound through salty seawater. It struck me that saline fluids are a tremendous propagator of ambient acoustic sound. So.. do you suspect that a submerged attack boat would reflect those ambient sounds with losses and pitch variations suitable to be discriminated by phononic coherence monitors... low cost devices that just signal their state when queried and, if different from surrounding ambience, would stand apart from other uninfluenced (non reflecting) devices in a field of thousands. The implications are clearly for more than one surveillance. Example...if an aircraft was flying through a field of RF phone emitters, microwave towers, or TV stations, would those signals reflect differences in coherence. Certainly. The possibilities are mind blowing.
Rick, I love the read but again I would have to start from scratch on the subject to learn and better understand some of the fundamentals, an effort I am no longer willing to put forth.
I can see and understand where the tech is headed but the language is foreign to this old farm boy,
So I'll just continue to read yours and others posts in hope that some of it will eventually rub off.
Interesting point. It seems likely that several factors together—shift work, smoking, dust exposure, and lifestyle habits—could all increase heart disease risk. I also enjoy learning from different online resources, including http://blooketjoinguide.org/ when exploring health and education topics.
The real question is "Why does quantum entanglement" exist. If different objects can behave identically when they are at great distances apart, why does that occur.
https://youtube.com/watch?v=4QSCXAQaz0k
All things are quantum objects, linked in space time. Watch the video and be amazed.