Showing posts with label laser. Show all posts
Showing posts with label laser. Show all posts

Thursday, December 8, 2022

The non-invasive laser light can improve short-term memory by 25%



When the brain is stressed by non-invasive laser light. That thing improves short-term memory by 25%. That thing might be interesting if we want to remember things better. There is the possibility to equip things like helmets with a system. That conducts the laser light to the head of the user. That kind of system can make it possible to make people with ADHD to study normally. 

“People with conditions like ADHD or other attention-related conditions could benefit from this type of treatment, which is safe, simple, and non-invasive, with no side-effects.” — Dongwei Li (ScitechDaily.com/Non-Invasive Laser Light Therapy Could Improve Short-Term Memory by Up to 25 Percent) 

That thing, called: "transcranial photobiomodulation", or tPBM makes it possible to help people remember things that they are learning in classes. Or the same system can also help astronauts remember things that they must do in some complex operations. This method means that the person can learn things better and more effectively.

The difference between laser and electric stimulation is that laser stimulation is safer than electric stimulation. The researchers must not worry about electric arcs inside the head of the user. The laser rays can target the right places in the brain with the use of laser LEDs. 

That means the user of that kind of system can use it anywhere if the laser system is portable. The portable memory improvement system is an interesting thing. That kind of system can make learning easier for people who have problems with concentration. It could also help the lives of people who have Alzheimer's. 

https://scitechdaily.com/non-invasive-laser-light-therapy-could-improve-short-term-memory-by-up-to-25-percent/

Friday, December 20, 2019

Data security and optical and sonar-based data transmitting methods.

Data security and optical and sonar-based data transmitting methods.



The artificial intelligence is an excellent tool for handling data security. If we are thinking the cameras of the mobile telephones they can use to detect the face or even the form of blood veins and another biometric identifier of the user, and if some unauthorized person would use the telephone, the information about that will be told to the controllers.

One of the biggest problems with optical data transmission is the system must have visual contact with the transmitter, and that means that the optical transmitters must put on the roof. And if the mobile system uses that thing, it must turn the camera to the transmitting LED system.

The LED system is always safer for eyes than laser-based systems, and the mobile device can be every side of the blinking LED, which would transmit data to the mobile device. There are two or three ways to make that thing real, and one is that the data would send from the mobile device by standard radio waves.

Problems with optical data transmission are that the systems must have visual contact with each other. The laser-based system, which uses optical fibers, has very bad security problems because if somebody would contact powerful carbon monoxide laser to that optical fiber, that can cause a fire in the very large areas. 


Or the mobile telephones sonar, what would focus the camera can also transmit data. That system would be work like old-time modems, which send the data by using sound. And that kind of sound-based intranets is used also for controlling underwater robots. And the pocket light of the mobile telephone can also be used to transmit bits. The thing that makes that system safe is that they are using extraordinary methods to make data networks. But some of those methods are suitable only in the closed environment, and in the streets, they are not very practical.

Sonar-based data transmission would have problems with noise.


So those data transfer methods are meant for use in some specially equipped offices and the devices must be kept in a certain position and area between support station and mobile devices must keep clear if we want to use optical data. The sonar-based system needs a silent environment and it might be suitable only in underwater situations. And maybe the divers would use that thing to control underwater drones, what are diving quadcopters, what can go in caves and shipwrecks. That would make research of those targets safer than going in self.

When we are thinking about the use of LED-lights in the data transfer missions, we can think that the LEDs that cannot see from outside would use as the WLAN system. But that thing might give more effective protection against hackers if we would use a hybrid solution.

That means that the telephone uses norma radio-based WLAN for search the data, and the system would use that optical data transmit for answering to the mobile system. Also, LED lights can be used as securing the data. If the mobile telephone doesn't get some code by that system, it would delete the classified data and deny access to confidential files.


Monday, November 25, 2019

Is protecting the satellites against the laser rays possible?





Is protecting the satellites against the laser rays possible?

Increasing the surface of the satellite

The thing is that increasing the surface of the satellites is one versions of the protection against the laser rays. This means that the satellite would be equipped with a large layer of mylar or some other material, which can be opened in the case, that satellite is targeted by the laser.

That means that the layer is acting as a handheld fan, what can be closed, but when the system would notice the laser ray, the layer would be open to increasing the layer, what means that the heat energy is expanding to a larger area, and that thing can save the structure. If the layer is shining like a mirror, it can reflect the radiation off the layer.

But how to protect the optics of the satellite?

There is possible to equip the camera with a fast-reacting shutter, which is denying the laser ray touching the CCD-elements. The base of this kind of system is that when the lightning tube would start stimulating the laser element, the laser would not create the full power energy ray immediately. That means that the fast-reacting shutter can cover the camera if the brightness would increase too high

But that denies taking images from the area, which are protected by blinding lasers. The other version is to use also the rotating shutter, which limits the laser light stress to the CCD-elements, that means that the satellite can take image also from the laser itself. But when we are thinking about the most modern technology, we could make nasty things to the lasers.

What if we would turn the laser ray back to the laser?

By using the shutter, what has a mirror in front of it, we could turn the laser ray back to the laser. That thing requires that the shutter must turn to laser, and that would cause the destruction of that thing. In somewhere has been introduced the "U" shaped satellite, whare is the optical cable, and when the laser is shooting to that thing, it would return to the point, where it is left. The light cable can be surrounded by LED,s what would increase the energy, which is targeted to the satellite.

The protection against DEW (Directed Energy Weapons) can base to quantum technology

The quantum technology could make it possible to create the layer, where there are multiple "U"-shaped optical fibers. Similar technology can be used to turn the ion and other kinds of DEW (directed energy weapons) rays back to the sender. When ions or electrons would hit the object, the energy ray will turn back by using the tube, what will send those things back,

But the more effective protection just removes the ionization, That means that the electrons would put back to ions. This means that the protons can shoot against electrons or antiprotons. Electrons can shoot against positions. The opposite polarity would pull those particles to impact. And the annihilation will happen too far from the surface of the craft.

The neutralization of ions is effective. The idea is that the ions or electrons would be collected by using a magnetic field, and then they would lose their energy. The idea is that this kind of layer is that it will turn the laser ray back to the point, where it has left, and this kind of system can make laser and ion weapons useless, but the technology of that kind of system is just in theoretical level.

Image:

https://www.armytimes.com/resizer/lihyd1f4SK5hoLRDvgyMG50VsFE=/1200x0/filters:quality(100)/arc-anglerfish-arc2-prod-mco.s3.amazonaws.com/public/WI7KBYKLIBCP3DCIMZSXL53ZXM.jpg

Saturday, June 1, 2019

Ancient Indian "Virmana weapon" looks like a modern fusion test unit

Ancient Indian "Virmana weapon" looks like a modern fusion test unit

(Picture I)


1. There are similarities with modern fusion test and this "Virmana picture"

When we are looking at the picture above this text, we might see the similarities between this image and the modern fusion test equipment. In the fusion tests, the lasers would be targeted to one little ampule, what is filled by using deuterium and tritium, what is the suitable fuel for the fusion power systems.

In this image, the structure might be seen, like there are three lasers, which are targeted to one point. And maybe those characters, what are standing side of this system are the operators of this system. Here we must remember that a similar system can be used in the spacecraft, what could theoretical travel to another star, or at least to the Oort cloud of our own solar system.

2. This kind of system is planned for "Project Daedalus", the fusion-powered spacecraft

For the interstellar spacecraft, what will travel to closest stars this kind of fusion system would be suitable. In the "Project Daedalus" was planned to create the fusion motor, what would use the glass ampules, what was filled with lithium, or deuterium and tritium, and then those ampules would shoot to the center of the motor, where the laser will cause fusion in those ampules.

In some texts the "Daedalus", that is the name of the hypothetical spacecraft would use helium 3, what is taken from the atmosphere of Jupiter.  The idea of this system has been invented by the British Interplanetary Society, which is an organization, that mission is to research the long-term spaceflight, and innovate the systems for those extreme long journeys. But this version is a little bit too futuristic, and that's why it was denied.

3. The more conventional version the motor uses the glass ampules, what would be filled with fusion material.

In the "conventional version" of this hypothetical spacecraft is used the glass ampules, what would shoot into laser spot, where the fusion would start. The lasers of this system would get their power for operation from the nuclear reactor, and that means that the fusion would not be self-sustaining.

That means the lasers would operate by fission reactor and the glass ampules would shoot in the middle of the lasers by using pressurized air or normal gun ammunition. In the beginning, the system can use the normal uranium or plutonium bullets, what would shoot to the point, where they are targeted by electromagnetic radiation.

4. For slowing the speed, would need the same mass of fuel what was use for accelerating speed. 

That would increase the speed of that hypothetical craft gently, and when the speed of that craft would rise to the speed. What is the escape velocity from our own solar system, the fusion power would start by shooting the capsules, what is filled with lithium or some other fusion fuel to the focus of the lasers.

Or the next stage of those bullets might have lithium bites, what will make them very small neutron bombs. And the radiation would increase the speed of "Daedalus" into 10-15% of the speed of the light. The thing is that decreasing the speed of that craft needs the same mass of the fuel, what was used for accelerating the speed.

And this is the thing, what makes interstellar space trip very complicated thing. If we would build the "Daedalus", which is the most conventional version of the models, what are introduced to the interstellar exploration, we should find some very important and interesting from that star. There is no way to turn back or change the destiny if there would not find some very interesting planet. But that is the different story.


. British interplanetary society homepage: https://www.bis-space.com/



Tuesday, May 21, 2019

Bio luminescent bacteria can give light to laser, which would be targeted to photocells.

Bio luminescent bacteria can give light to laser, which would be targeted to photocells.

Recently I wrote about the use of bio luminescent light in the production of electricity. In there I wrote that the bio luminescent bacteria would put in the tank, what would be surrounded by silicon panels. Another way to make electricity is to put the laser in the middle of the tank, and that thing can be used for creating light to laser ray, which can used as the electric source.

By using laser technology for the production of electricity by using the bio luminescence makes possible to create the powerful high-energy beam, which can transform into electricity by using light cells.  The system is very simple, and the principle is to put those shining plankton or bacteria in the laser, and then the system would grow the force of that light, that it can be used in the production of electricity. The system would not work immediately, but the laser system can make it stranger, and then the laser would target to the photocells, what are now able to create electricity.

This kind of system could be suitable for space stations and other kinds of things, there is no ability to use normal fuel cells or a nuclear reactor. If we would think this system as the power source for some robots or spacecraft, the thing is that we could create the machine, what needs only sugar. This sugar is the fuel, what it can give to the bacteria, and the bacteria culture creates the bio luminescent light, which would point to the photocells.

https://controllingsociety.blogspot.com/p/the-use-of-bio-electricity-is-easy.html

Tuesday, May 14, 2019

Who has made this sculpted image, what looks like the head of the bird?

Who has made this sculpted image, what looks like the head of the bird?



Above this text, you see the image, what portraits one rock, and as you see there is strange from in this object. In fact, I have taken this picture, and the interesting thing is, who has made this bird head image on the stone because there is needed very good tools like laser or resonance cutter, what can be used to make sharp and thin lines on the granite rock.

Of course, that can be created by natural erosion, but the image seems very unusual for creation of natural reasons. Maybe it is made by using some home-made laser, or the laser, what is bought from Russia, when the Soviet Union has been decomposed, and there were many things for sale, which were otherwise out of the hands of regular people. But the lasers could actually be made by some local inventor in the home laboratory. And maybe that kind of person has been tested that thing to that rock.

There seems like be the head of the bird sculptured on this rock, and that is really amazing. There is actually needed the laser or some other special instrument for making that image, or the image must be made by some high-speed instrument, what would used to make that kind of line.

The thing, what makes this thing very interesting is that in the normal building sites is not laser-cutters, what can do that kind of things. There is a possibility that somebody has access to that kind of equipment, and that laser would be used for the sharp cuttings, and maybe some worker has lent that thing from the building site.

Did somebody test self-made laser?

There is one possibility, why this image has been made, and that is if somebody has been tested the homemade laser? There is another explanation and that is connected to the decomposition of the Soviet Union, and maybe somebody has bought the laser weapon from that country, and test that thing to this stone.

Otherwise, lasers are really powerful tools, and in the wrong hands, they can be really dangerous. The same lasers, what is used as the cutting tools can be used as the weapons, and also persons like burglaries really would be enjoyed by this kind of Christmas gift. Lasers can cut concrete walls effectively, and they can be used to cutting the doors to the walls, but in the normal building sites there is used the diamond cutter, what is installed in the angle grinder. The lasers are really unusual tools in normal building sites.

This image itself is very interesting, because the reason, why it has been made is really interesting. If in some building sites the holes have been using lasers, or somebody has tested the resonance cutters to that stone, the thing would be really interesting. Those tools are really expensive, and that's why that image has been taken.

Wednesday, February 27, 2019

About the Russian jamming technology.


Russian government have been introduced its electronic warfare capacity and jammed the NATO GPS systems during the exercises. And this kind of actions might be something, what uncovers the technologies and other capacities of the EMP- and other EW or electronic warfare systems, and that kind of demonstration might cause that those EW systems can counter-jam or in the secrecy would be created new kind of versions of GPS, what is much more difficult to jam. In this case, we must remember old Chinese wisdom, that any weapons must not use for anything. This kind of systems would make possible to avoid jamming systems in real warfare, and that kind of systems, what bases the jumping frequencies or laser systems, would that cause nasty surprise in the battlefield.

Next generation GPS systems might bases the laser technology, and the laser would send the signal to photo recon satellite, which locates the laser point on the map, and then it would happen by sending the image from satellite camera straight back to the ground system. In this case, the system uses laser light, which is more difficult to jam than the radio frequencies. Also, the system might be hybrid, which means that it would use a very short period but powerful and well-targeted MASER signals to send the location of the GPS.

And the thing is that the digital maps, what are used in this kind of systems might be equipped with the same points, what are in able to found in nature. This makes possible to point a person in the digital map very fast. And the needed data would send very fast. Also, the system can ask the coordinates by using a laser, but the answer will get by radios. But the very small size inertial navigation systems might be very useful in the operations, where is the risk of GPS jamming.

Those systems might be so small that they could put in the pocket and that means that they can be a suitable solution for navigation in the area, where the GPS would not work. That equipment might have screens where is the world map, and the computer would calculate the location, and in fact, this system might be used along with GPS. If the system wants to make sure it's the position, it would ask the GPS signal Or for the location would use ground-based radio-transmitters what location is very well known, and when the system requests the location, the antennas would track it by using triangulation. Then they can calculate the location of the mobile system and after that send the coordinates of that device to the receiver. The location can set the system manually or for that thing can be used integrated systems, that includes GPS and inertial navigation system.

That means that the small size inertial systems, what are used also in the rockets would be located at a certain point on the Earth. And then the inertial or gyroscope navigation system would just mark the road, what the system travels. The beginning point of the navigation might be in everywhere on the Earth and after that, the nanotechnological version of gyroscope navigation system might be used as GPS, but it would be more difficult to jam. And those systems size might be like soap bite. What allows to carry them even in the pocket.

https://thestrategybridge.org/the-bridge/2019/2/26/russian-battlefield-awareness-and-information-dominance-improved-capabilities-and-future-challenges

Monday, February 25, 2019

Use of radio waves and plasma as replacing the wires of the microchips.


There is the way to make microchip where is no need for physical wires, and in this microprocessor, the entire communication will happen by using radio waves or plasma. The size of those systems will be very large, and that is one reason, why they are not commonly used. I have written about those solutions earlier, and the size of them would be like some kind of house. That thing would allow creating fundamental microchips but the problem is the size of those processors.

But in fact, there is a thing, what we must realize, the model of the Internet is like some kind of microcircuit, and when we are thinking about the microprocessors, what internal architecture is based in the radio-transmissions or plasmoid channels, we must realize that those microprocessors would be easier to build, than some light operating versions. The radio waves are actually the electricity, and if they would transmit to the receiver, they can give the electricity to that system.

 If we would want to use radio waves or plasma as the wires of the microcircuit or in the internal architecture of the microprocessors, we must make those things very large. Or we must create very small size radio-masers, and the thing what makes those solutions very interesting is, that they would allow keeping the temperature in the microcircuit very low.

The light-transistor or light operated microchip would use laser-light for transmitting the data inside the processor, and the photovoltaic cell will transfer the light to electricity. In fact, the lasers can use in the normal-size microcircuits, but the microprocessors itself must be equipped with lasers, which are made by using nanotechnology. In fact, that means very small laser components like small sized mirrors and crystals. Also, lightning tubes must be very small in size.

Computer researchers published a new algorithm that revolutionizes web management.

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