Showing posts with label quantum dots. Show all posts
Showing posts with label quantum dots. Show all posts

Saturday, October 4, 2025

The photonic and quantum dots can make the object invisible.



Do you know how to protect layers against laser rays? One version is to use counter laser rays that counteract the incoming laser rays. When two laser rays impact each other. That thing can scatter the incoming laser beam. The system that can scatter things. Like gravity waves. Can theoretically deny the gravitational effect between objects. But that requires synthetic gravitational waves. This kind of laser forms the quantum stylus, which can make new active quantum materials. 

But that system can make it possible to make materials invisible to radar, infrared, and the human eye. Maybe those quantum needles that aim electromagnetic radiation past the object can explain dark matter. Those quantum styluses that can be the whirls in the quantum fields. Can aim the electromagnetic radiation past the object. Forming a situation where that radiation cannot reach the particle. If those EM, or quantum fields, cannot touch a particle. We cannot see that particle. 

The system can be based on two photons. One photon forms the ring-shaped captured lightwave. That lightwave can be captured around some qasiparticle. Then another photon is standing in that ring. And the system inputs energy to that standard photon. This makes it possible to create the quantum antenna that drives the quantum fields past the surface. 

The quantum needles can deny the reflection from the surface. Those quantum styluses can push the quantum fields out from their top. And if the surface below them is at a very low energy level, that can aim the quantum field to the material layer. This thing makes it possible. To create material that is invisible to radar, infrared, and even the human eye. 


Surface plasmon polaritons (SPPs) are electromagnetic waves that travel along a metal–dielectric or metal–air interface, typically in the infrared or visible frequency. The term "surface plasmon polariton" explains. The wave involves both charge motion in the metal ("surface plasmon") and electromagnetic waves in the air or dielectric ("polariton"). (Wikipedia, surface plasmon)

Surface plasmons (SPs) are coherent delocalized electron oscillations that exist at the interface between any two materials where the real part of the dielectric function changes sign across the interface (e.g., a metal-dielectric interface, such as a metal sheet in air). SPs have lower energy than bulk (or volume) plasmons, which quantise the longitudinal electron oscillations about positive ion cores within the bulk of an electron gas (or plasma). (Wikipedia, surface plasmon)

The surface polaritons (SP) and surface plasmon polaritons (SPP) can trap photons over them. With the energy fields, those photons can form the quantum needles or quantum hair. When electromagnetic radiation hits those quantum needles, that quantum needle pushes the radiation away from that point. When the incoming radiation hits the quantum needle, it turns it away from the structure, and that can turn the surface invisible because there is no reflection. The quantum stylus turns radiation away from the surface. Making the cone that travels past the structure. 

The surface polariton is the thing that can also form around a particle or an elementary particle. This gives one explanation for the dark matter. The idea is that the dark matter particles can be surrounded by the quantum hair. That quantum hair that can be the quantum-tornadoes around the elementary particle can deny reflection from the particle. There is a possibility that this kind of structure can focus the reflection that the particle gives into such a small area. We cannot see that reflection. 






“The electric field (E-field) of an SPP at the silver-air interface, at the frequency where the free-space wavelength is 370 nm. The animation shows how the E-field varies over an optical cycle. The permittivity of silver at this frequency is (−2.6 + 0.6i). The picture is (0.3 × 370 nm) across horizontally; the SPP wavelength is much smaller than the free-space wavelength.”(Wikipedia, Surface plasmon polariton)






“The E-field of an SPP at the silver-air interface, at a much lower frequency corresponding to a free-space wavelength of 10μm. At this frequency, the silver behaves approximately as a perfect electric conductor, and the SPP is called a Sommerfeld–Zenneck wave, with almost the same wavelength as the free-space wavelength. The permittivity of silver at this frequency is (−2700 + 1400i). The picture is 6 μm across horizontally.”(Wikipedia, Surface plasmon polariton)

As you see from the images above. If there is a horizontal wave that travels across the field, that thing can turn those reflecting waves in the same direction as the horizontal wave travels. 



“Schematic representation of an electron density wave propagating along a metal–dielectric interface. The charge density oscillations and associated electromagnetic fields are called surface plasmon-polariton waves. The exponential dependence of the electromagnetic field intensity on the distance away from the interface is shown on the right. These waves can be excited very efficiently with light in the visible range of the electromagnetic spectrum.” (Wikipedia, Surface plasmon)

The surface plasmon (SP) can form a virtual surface that scatters the reflection. That acts like a stealth structure. But in the other types of wavelength. The quantum needle acts the same way as a stealth surface that scatters radio waves. But this surface puts optical light waves. To slide over the surface. 



If the quantum field can make a structure. That looks like. A supersonic pressure cone. That thing turns material invisible to the observer. If the system must turn radio waves away from that pressure cone, it must only ionize gas that makes the pressure cone. Those ions will aim incoming radio waves out from the surface. The cone aims the radio waves into the sides. And denies reflection to the radar. The quantum field manipulation acts in the same way. 

Because the quantum field cannot touch the surface, there is no reflection. In reflection, a particle stores energy until its energy level turns high enough that it can release its extra energy in the form of a photon. If there is no energy flow that touches the particle or that energy cone’s energy level is too high, the energy that the particle sends cannot travel through the wall of that energy cone. 

Or when the quantum field closes to that particle, it’s possible that the quantum styluses drive energy away from the structure. The idea is that when wave movement impacts the quantum needle, it aims the wave away from the structure. 

The idea is taken from the pressure cone that forms around supersonic aircraft. The thing that forms the pressure cone is the airflow, and the airflow can form this cone if the object is static and the wind blows against it. The thing that forms the pressure wave is the needle at the nose of the aircraft. 

The idea is that if the particle or quantum structure has a similar needle that aims the quantum cone in a similar way. As the aerodynamic needle aims the airflow. This thing makes it possible. To aim the quantum fields away from the particle or surface. If the quantum field doesn’t touch the surface, it turns the surface invisible, because there is no reflection. 


https://en.wikipedia.org/wiki/Polariton


https://en.wikipedia.org/wiki/Surface_plasmon


https://en.wikipedia.org/wiki/Surface_plasmon_polariton



Thursday, May 8, 2025

The source of the black hole's X-ray radiation is solved.



"This artist’s concept depicts the central region of the blazar BL Lacertae, a supermassive black hole surrounded by a bright disk and a jet oriented toward Earth. The galaxy’s central black hole is surrounded by swirls of orange in various shades, representing the accretion disk of material falling toward the black hole. While black holes are known for pulling in material, this accretion process can result in the ejection of jets of electrons at nearly the speed of light". (ScitechDaily, NASA Cracks 30-Year X-ray Mystery With Blazing Black Hole Light Show)

"The jet of matter is represented by the cone of light that starts at the center of the black hole and widens out as it reaches the bottom of the image. It is streaked with lines of white, pink, and purple, which represent helix-shaped magnetic fields. We can observe these jets in many wavelengths of light, including radio, optical, and X-ray. NASA’s Imaging X-ray Polarimetry Explorer (IXPE) recently collaborated with radio and optical telescopes to observe this jet and determine how the X-rays are generated in these types of celestial environments. Credit: NASA/Pablo Garcia" (ScitechDaily, NASA Cracks 30-Year X-ray Mystery With Blazing Black Hole Light Show)


The black hole's X-ray radiation source is the interaction between high-energy photons and electrons. That interaction happens between electrons that travel almost at the speed of light and the light cone that surrounds the electron beam in the relativistic jet. The interaction means that when the electron and photon collide. That thing forms the high-energy X-ray radiation. When the photon in the light cone comes out from the black hole's center in the relativistic jet. It makes a similar thing to a car that collides with another car's back. 

That collision sends electromagnetic wave movement. When a light cone travels around the relativistic jet that thing sends wave movement into the black hole's jet. That maser effect pushes lots of energy into the relativistic jet. The idea is similar when the laser ray travels through the lighting tubes. Side-coming radiation increases that laser ray's power. 

So when we think about that thing and the gravitational radiation, we can think that gravitational radiation is the extremely high-energy photons. 

The idea of gravitational radiation or gravity waves source in photons is this. The quantum fields around the black holes press the tornado in the middle of that structure. 


If the black hole stops, it releases so much energy, that an energy burst can destroy the black hole. 


When a black hole pulls energy and material in it, its spin accelerates. In that case. A black hole turns more energy and material into kinetic energy. This increases the black hole's size. When the energy flow turns opposite. A black hole starts to release its energy. Its spin slows. That decreases the black hole's mass and size.

So if the black hole's center or singularity stops that releases an extremely high energy load to the black hole. That energy load can detonate the entire black hole. The idea is that when or if the black hole stops it releases so high-level energy bursts into the quantum fields that will blast to the universe. That thing means that a black hole must spin so that it can collect energy from its environment. If a black hole stops it releases lots of energy into its environment. 

And if we want to continue this model with quantum gravitation. That means that all gravity centers act the same way. Quantum gravity is basically the same gravity that things like planets and black holes create. The gravity centers are the group of quantum gravity dots. That means the quantum gravity dot should spin. 

So that it can create a gravity field. The reason why things like wormholes are hard to make or understand is that: the quantum gravity dots should be close enough to each other that they can form the gravity channel or bridge across the universe. 

The idea is that gravity, or quantum gravity dot is like a hole. When energy starts to spin that dot, that can be the hypothetical graviton that the quantum dot harnesses energy from around it. Then that quantum dot creates the hole or channel through the quantum fields or Higgs field. That is the base energy field in the universe. 


The black hole is the key to that channel. It's an extremely high-power version of the quantum gravity dots. The massive combination of the merged quantum dots. 


When a black hole, or its singularity forms that extremely dense object turns the quantum fields into a whirl or energy statue. When that object starts to spin. It binds energy inside it into the form of kinetic energy. That effect causes a situation where the quantum field tries to fill that space. In that process, the black hole pulls quantum fields around that structure. 

That means those quantum fields are starting to push against that energy statute that forms in the black hole's spin axle. That raises the energy level in the statue. The energy statute causes a situation that which energy starts to jump around in the black hole. That causes black hole eruptions where the event horizon moves black and worth. Sometimes very high energy level particles and wave movement can escape from the point, where the event horizon retreats.  

When a black hole pulls lots of material in it, its spin speed rises. When that material ends. The black hole starts to release its energy. Its spin speed slows and it releases a little bit of its mass. In that process, the event horizon moves black. And black hole can release high-energy particles that are just at the point of the event horizon. 


https://scitechdaily.com/nasa-cracks-30-year-x-ray-mystery-with-blazing-black-hole-light-show/

Dark photons can be the most promising candidates for dark matter.

"These include WIMPs (Weakly Interacting Massive Particles), primordial black holes (PBHs), axions, and "dark photons." In th...