Skip to main content

Subconscious and quantum computing




Subconscious and quantum computing

1) Should computers have subconscious or ability to see dreams?

When we are thinking about the plans to make artificial brains, we must remember that we don't do anything with them, if there are no data and action models in those things. For making, solution brains need data, what they can process. And dreams have an extremely strong role in that thing.

The mission of the subconscious is to make brains to process the data, what is stored in that area of knowledge. When people like Wilhelm Wundt realized that we don't have access even in our mind or something that is "deep inside our brains", they realized what kind of capacity human brains have. We are using an only little part of our brain capacity in our everyday life in that way that we can control the things what is happening in our mind. Or can we control our minds or just behavior?

We are all been in the situation, where we are really angry, but we don't just show that thing to other people. When or boss will deny our suggestion for a holiday that will make us feel angry. But we would not say that thing to our boss. We can say "never mind", but deep in our mind, we are facing the reality, that all our summer plans must be renewed and that thing causes anger. But we don't probably show our feelings to our boss, because that can cause divination.

But we are using about 20-30% of our brain capacity to process things, what we are seeing. And the rest of that thing is stored out of our consciousness, that thing causes that some things are realized long after the thing that has caused some feelings. Sometimes we are facing things where somebody says something bad to us, and at first, we are not reacting to that thing. But after a while, the anger turns in our brains. This thing can be seen in cases like doorman would remove us from the bar.

At first, we might think like "never mind" but then we are starting to feel angry. The reason for that is the subconscious of what has been processed this thing. One mission of the dreams is to process the data, what is stored in our memory, and when we are sleeping the brain cells of the motoric centers are released for solving the problem, what we are facing during the daytime. This thing makes dreams so interesting.

1.2) What if we can control our dreams?

What if we could adjust dreams or make artificial dreams, what can put in the brain core by using electromagnetic impulses. Then the electromagnetic dream can turn to a solution for the problem during the nighttime. But that kind of thing is dangerous because that thing can affect our mind deeper than we ever expect.

The reason why Wundt and his successors during psychology and neural sciences interested in dreams were the problems that were solved while sleeping. When people sometimes go to sleep and leave the problem to the table, what they are trying to solve all day, the problem has sometimes been solved while the person is sleeping.

But when we are talking about the dreams what are locked in the area, what is away from our knowledge, we are forgetting that we sometimes remember parts of our dreams. Those dreams are repeating time after time, and that kind of dream is sometimes quite easy to remember. And when we are thinking about the structure of the dreams there is always one model. They have two sequences. One is preparing like going in the house, and the last one is when the person comes out of the house.

2) Benefiting dreams in quantum computing

So the thing that this kind of structure seems is that brains are preprocessing the data in memory and different brain areas and then the preprocessed data would send in the inner brain structure, what mission is to handle that thing. That thing causes the typical sleep EEG in the brains. There is a strong electric vortex during REM-dream, and then the preprocessed data would send in the areas, that are not communicating straight with the brain core.

When we are looking at the EEG of the sleeping people, we are seeing strong curves at both sides of the "empty area". That thing makes researchers believe that the first series of the curves of the REM-dream mean that the brains would preprocess the information. And the straight sequence means that the problem is delivered to the inner brain areas, and the second part of the curves mean that the solution is delivered to the brain core and knowledge of the person.

3) Should the quantum computer see "cyber dreams"?

This kind of model is planned to benefit in technology, which is used in quantum computers. In this model, the normal computer would preprocess the data, what it would send the quantum processor. So in this model, the quantum processor is like the subconscious of the computer, and that makes the dreams so interesting. What if we can create a similar thing, the subconscious to the computer. In this model, the operator would communicate with the quantum computer by using the normal computer as the tool, and the computer would preprocess the data to the form, what the quantum computer would understand.

When we are thinking about the purpose of human brains, we can see that the purpose of brains is just processed the data, what is coming from sensors, but we have one thing, what is not supporting that thing. And the thing is dreams. Imagination or ability to abstract thinking is one part of humanity, and sometimes we might think that some people have a strong ability to visual thinking. That ability is the key element when a person creates new things. And the dreams are the extreme version of abstract thinking. Productive thinking is the term for the process, where the human would turn the abstraction to the product. The imagination is the thing, what would modify our memories to new things.


Image: https://a57.foxnews.com/static.foxnews.com/foxnews.com/content/uploads/2019/04/931/524/Brain_AP96115522-1024x576.jpg?ve=1&tl=1

Comments

Popular posts from this blog

Plasmonic waves can make new waves in quantum technology.

"LSU researchers have made a significant discovery related to the fundamental properties and behavior of plasmonic waves, which can lead ot the development of more sensitive and robust quantum technologies. Credit: LSU" (ScitechDaily, Plasmonics Breakthrough Unleashes New Era of Quantum Technologies) Plasmonic waves in the quantum gas are the next-generation tools. The plasmonic wave is quite similar to radio waves. Or, rather say it, a combination of acoustic waves and electromagnetic waves. Quantum gas is an atom group. In those atom groups, temperature and pressure are extremely low.  The distance of atoms is long. And when an electromagnetic system can pump energy to those atoms. But the thing in quantum gas is that the atoms also make physical movements like soundwaves. It's possible. To create quantum gas using monoatomic ions like ionized noble gas. In those systems, positive (or negative) atoms push each other away.  When the box is filled with quantum gas and som

The breakthrough in solid-state qubits.

Hybrid integration of a designer nanodiamond with photonic circuits via ring resonators. Credit Steven Burrows/Sun Group (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) ****************************************** The next part is from ScitechDaily.com "JILA breakthrough in integrating artificial atoms with photonic circuits advances quantum computing efficiency and scalability". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "In quantum information science, many particles can act as “bits,” from individual atoms to photons. At JILA, researchers utilize these bits as “qubits,” storing and processing quantum 1s or 0s through a unique system". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "While many JILA Fellows focus on qubits found in nature, such as atoms and ions, JILA Associate Fellow and University of Colorado Boulder Assistant

Metamaterials can change their properties in an electric- or electro-optical field.

"Researchers have created a novel metamaterial that can dynamically tune its shape and properties in real-time, offering unprecedented adaptability for applications in robotics and smart materials. This development bridges the gap between current materials and the adaptability seen in nature, paving the way for the future of adaptive technologies. Credit: UNIST" (ScitechDaily, Metamaterial Magic: Scientists Develop New Material That Can Dynamically Tune Its Shape and Mechanical Properties in Real-Time) Metamaterials can change their properties in an electric- or electro-optical field.  An electro-optical activator can also be an IR state, which means. The metamorphosis in the material can thermally activate.  AI is the ultimate tool for metamaterial research. Metamaterials are nanotechnical- or quantum technical tools that can change their properties, like reflection or state from solid to liquid when the electric or optical effect hits that material. The metamaterial can cru