Showing posts with label binary stars. Show all posts
Showing posts with label binary stars. Show all posts

Wednesday, June 10, 2026

Primordial black holes, magnetic fields. And traveling black holes.




“Artist’s illustration of two black holes orbiting each other. Credit: Carl Knox, OzGrav, Swinburne University of Technology. Scientists believe an unusual LIGO detection may be evidence of a primordial black hole, potentially linking these long-theorized objects to the mystery of dark matter.” (ScitechDaily, Mysterious Cosmic Signal Could Be First Real Evidence of Primordial Black Holes)

Dark Energy. Primordial black holes, magnetic fields. And traveling black holes. 

When two black holes collide. Their acceleration disks cross each other. That event causes a very high-energy gamma-ray burst. Same way. When the black hole material jets impact. That impact sends high-energy radiation. It is introduced that the dark energy source is in the black hole wind. High-energy particles that black holes accelerate. Impact outside galaxies. And those impacts. Causes very high energy radiation. The reason why we cannot see those impacts is that. 

The light in galaxies and quasars covers those short-term flashes below them. And that thing can mean. Dark energy is extremely short-term gamma-ray flashes outside galaxies and quasars. But that is one new model. This means that dark energy does not exist. As an independent energy form. That can be so weak gamma-rays that we simply cannot detect that radiation. Because of a supermassive black hole. And black holes in our own galaxy cover those short-term flashes under their gamma-ray shine. 


"A new analysis argues that the standard cosmological model may be fundamentally unstable, raising questions about whether dark energy is really needed to explain the universe’s accelerating expansion. Credit: SciTechDaily.com." (ScitechDaily, A Universe Without Dark Energy? Mathematicians Challenge Standard Cosmology)

In theories, at the beginning of the universe, black holes formed. Those black holes could form straight from the radiation. That means. Those primordial black holes can be the “Kugelblitz” black holes. But there is another thing. That could form those cosmic monsters. The whirl in some energy field, like a gravitational field. It can start to pack dark matter particles into one point. That means that. Dark matter particles can play a vital role in the formation of dark matter. 

The strange radiation.  It can be the first observation about the primordial black holes. Primordial black holes can be the first supermassive-scale black holes. And the thing that makes those monsters so large and powerful is the universe’s expansion. When the universe expands. The size of the acceleration disk grows. And its energy level decreases. When the universe’s energy level decreases. That means that. The force that presses against the acceleration disk decreases. And that causes the expansion of the accretion disk. Because the energy level in the acceleration disk is lower. That lets black holes’ event horizon expand. 

And the black hole requires a larger accretion disk. To stay in form. The acceleration disk is the thing. That keeps the black hole in the form. If that disk does not exist. The black hole starts to lose matter. And that makes the black hole evaporate in seconds. The acceleration disk is the thing. That denies a black hole. To send matter or energy out from it. A black hole exists as long as the accretion disk’s energy level is higher. Than the space inside the event horizon. When the space inside the event horizon turns higher than the environment. That makes the black hole evaporate. 





“Visualization of gas flows around a binary protostar system calculated by ATERUI III. The gas shown in red orbits around one of the two protostars. The gas shown in blue orbits around the combined binary system. The gas shown in green is being expelled from the system. And it is carrying away angular momentum. The present research shows that the magnetic field plays an important role in expelling gas and angular momentum. Credit: Matsumoto, Hotokezaka, Inayoshi 2026” (ScitechDaily, Magnetic Fields May Solve a Longstanding Binary Star Mystery)

The magnetic fields can bring black holes and newborn stars together. And maybe those fields tell more about the reason why binary stars are so common. In binary star systems, the other star replaces the planetary system. But there are observations that binary star systems involve planets. But it is possible that binary stars can capture rogue planets. That can orbit those stars or even black hole pairs from  long distances. 

Binary stars can be the first step to forming supermassive black holes. Supermassive black holes require enough material and energy. That they can form. The magnetic fields can also play a role in cases. Where black holes start to move. The magnetic field. Along with the gravity sling. It can put. Particles move extremely fast. 

The fastest known black hole wind travels across the universe with 30% of the speed of light.

But there is a possibility. That another black hole pushes the smaller black hole into motion. 

The effect that puts the supermassive object into motion can be another black hole. Or some kind of anomaly in the fields around it. The weaker point in the field can cause a situation. The black hole . It starts to travel in that direction. The hole can be any of the four fundamental forces: gravity or electromagnetism. 



“An artist’s impression of a quasar. The black dot in the center represents the supermassive black hole at the center of the quasar. The red-and-yellow spiral surrounding it shows the disc of hot gas falling into the black hole. Some of this gas is ejected as the quasar’s wind, which is shown in light blue. The size of the disc shown is comparable to the size of our Solar System. Credit: NASA/CXC/M. Weiss, Nahks Tr’Ehnl, Nurten Filiz Ak” (ScitechDaily,Record-Breaking Black Hole Wind Blasts Through Space at 30% the Speed of Light)


Or in the weak and strong nuclear force. The most logical guess is that the anomaly is the magnetic field. The hole in the magnetic field causes a situation. The magnetic field causes asymmetry in the black hole's halo or its accretion disk. If that acceleration disk separates from the black hole’s event horizon. Or it's pressure form against the event horizon changes. 

That thing can cause a situation. That black hole. It will start. To travel across the universe. Another reason for traveling black holes can be found. In the gravity slings. The gravity sling between a supermassive and stellar-mass black hole. When a supermassive black hole impacts a stellar mass black hole. That can cause a situation. The supermassive black hole slings its lighter companion through the universe. 

The gravitational sling was used. In the Voyager missions. The planets like Jupiter and Saturn. Gravitational fields. Accelerated those probes to such a high speed. That they can travel outside the solar system. If a stellar-mass black hole travels through the supermassive black hole’s gravitational field. That supermassive black hole can sling it through the universe with incredible speed. 


https://scitechdaily.com/a-universe-without-dark-energy-mathematicians-challenge-standard-cosmology/


https://scitechdaily.com/magnetic-fields-may-solve-a-longstanding-binary-star-mystery/


https://scitechdaily.com/mysterious-cosmic-signal-could-be-first-real-evidence-of-primordial-black-holes/


https://scitechdaily.com/record-breaking-black-hole-wind-blasts-through-space-at-30-the-speed-of-light/

Saturday, June 6, 2026

Cannibal star can be the reason for one of the universe's mysteries.



“Scientists have linked a mysterious class of repeating cosmic signals to a white dwarf star stealing material from a neighboring star. The breakthrough not only solves a long-standing astronomical puzzle but also provides a powerful new tool for understanding similar signals across the galaxy. (Artist’s concept.) Credit: SciTechDaily.com” (ScitechDaily, A Cannibal Star Finally Solves One of Astronomy’s Biggest Mysteries)

“A star caught feeding on its companion has finally revealed the source of some of the galaxy’s most mysterious repeating signals.”(ScitechDaily, A Cannibal Star Finally Solves One of Astronomy’s Biggest Mysteries)

An international research team led by scientists at the University of Sydney has uncovered the strongest evidence yet explaining the origin of a puzzling type of cosmic signal. Their work has also revealed a rare stellar system that offers a unique opportunity to study some of the most extreme conditions in the universe.

Cannibal stars are stars that pull matter from their companion. They can be normal stars, or white dwarfs, magnetars, neutron stars, or black holes. When the plasma bridge travels through the plasma layer. That forms radio waves. X-rays and gamma rays. Depending on the companion. The X-ray bursts from Cygnus X-1 uncovered the black hole in that system. Pulsars sometimes get their energy from matter. 

That they pull out from other stars. And those events. They can be behind many repeating long-term radio transmissions. When a neutron star or black hole captures another star. That thing forms a situation. That the matter starts to flow to the gravity center. Cases like Sirius B. That is a white dwarf that orbits Sirius. The bright spectral class A star. There are discussions about the formation of Sirius B. Sometimes, astronomers say that at the beginning. The Sirius B was about 5 times heavier than the Sun. 

But then Sirius A stole lots of matter. And that means that the Sirius B blew 4/5 of its mass into space or Sirius A. Today, Sirius B is about a solar-mass white dwarf. The size of that extremely dense object is about the same as Earth. The Sirius A age is about 225-250 million years. The age of Sirius B is about 228 million years. 





“Accreting white dwarf illustration. Credit: Carl Knox (OzGrav, Swinburne University of Technology) and Joshua Preston Pritchard (CSIRO)” (ScitechDaily, A Cannibal Star Finally Solves One of Astronomy’s Biggest Mysteries)


“CSIRO ’s ASKAP radio telescope on Wajarri Yamaji Country. Credit: Alex Cherney.” (ScitechDaily, A Cannibal Star Finally Solves One of Astronomy’s Biggest Mysteries)



“The ASKAP radio telescope at Inyarrimanha Ilgari Bundara, the CSIRO Murchison Radio-astronomy Observatory on Wajarri Yamaji Country in Western Australia. Credit: Alex Cherney/CSIRO” (ScitechDaily, A Cannibal Star Finally Solves One of Astronomy’s Biggest Mysteries)

But some people say. That Sirius B is too light. And Sirius A is too young to have formed in the same nebula. It’s possible that Sirius B lost lots of matter. But the mass of Sirius A is about 2 times that of the Sun. So, in calculations, about 3/5 of the Sirius B mass “vanished” into space. When that star detonated in a nova eruption. 

Or it should lose too much mass. They say that maybe Sirius A. A two-times as massive a star as the Sun. Captured that small white dwarf. They explain their opinion that Sirius B should turn into a black hole. Or a neutron star. And heavy elements on the surface of Sirius B. 

They are from the nebula around Sirius A. Or in some other model. The Sirius B detonated as a nova. And that nova put the Sirius A  into form. But those things are speculative. The only fact is that. There must be asteroids in the Sirius system. And sometimes some asteroids must hit the surface of Sirius B. 

The bright star can hide its companion. But when the companion star travels through a massive plasma eruption. That can cause a situation. There, the eruption launches the radio signals. If that plasma hits the dwarf star’s surface,   

But the universe is full of binary stars. There, the dwarf stars orbit. The red giants or some so-called main-sequence stars. In the cases that. Some dwarf stars orbit things like Wolf-Rayet stars. The dwarf can travel through the material eruptions of those stars. That can cause unexpected radio impulses. 


https://scitechdaily.com/a-cannibal-star-finally-solves-one-of-astronomys-biggest-mysteries/


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

Wednesday, April 16, 2025

Can a binary star's planet host lifeforms?


"A strange new planet has been found circling two stars at a right angle — like something out of sci-fi. It’s the first solid evidence of a so-called polar orbit around a binary system. Credit: SciTechDaily.com" (ScitechDaily, Planet Found Orbiting Two Stars at a Perfect 90-Degree Angle)

The polar planet that orbits the binary star at a 90-degree angle can host life. There is only one of those polar exoplanets known. That planet orbits two brown dwarfs. So it will not host lifeforms. But it tells that the polar exoplanets exist. 

There is the possibility that if the planet orbits the binary star at a perfect 90-degree angle to the star's layer. That thing makes it possible that there are lifeforms on that planet. The binary stars are quite complicated things. And if the planet's orbital angle is perfect conditions on that planet can be stable. That can offer the harbor for life. 

The planet can also lie to the binary star. That means the binary star can be like any star. The planetary systems can form around the stars. Or the star can capture rogue planets around it. There is the model that the rogue planets are the most common planet types in the universe. Those planets can form in supernova remnants or when some cosmic shockwave travels through the small molecular clouds. 


"This is an artist’s impression of the exoplanet 2M1510 (AB) b’s unusual orbit around its host stars, a pair of brown dwarfs. The newly discovered planet has a polar orbit, which is perpendicular to the plane in which the two stars are traveling. Credit: ESO/L. Calçada" (ScitechDaily, Planet Found Orbiting Two Stars at a Perfect 90-Degree Angle)


"Using ESO’s Very Large Telescope (VLT), astronomers have found an exoplanet orbiting a pair of peculiar stars at an angle of 90 degrees. There have previously been hints that these so-called polar planets around two stars could exist, but we now have clear evidence that this is the case. This special system was found by observing the orbital path of the two stars being pushed and pulled in a way that could only be explained by the presence of a planet on a polar orbit. This video summarizes the discovery, explaining the nature of these peculiar stars and the method astronomers used to find this odd planet. Credit: ESO" (ScitechDaily, Planet Found Orbiting Two Stars at a Perfect 90-Degree Angle)


In that case, the planet axle is in the same direction as the binary star, so participants can orbit each other at close distance. 

Can act as the lone star. In that case. Those planets have night and day like on Earth. The other versions are so-called open or long-distance binary- or multiple stars. There is the possibility that both of those stars have their own planetary systems. Maybe those planets have not night at all. 

The binary star systems are more common than the lone star systems. In the 1990s most researchers thought that binary stars could not have planets because their gravity effect would destroy the protoplanet. 

Today we know. Also, binary stars have planets. The fact is that almost every red dwarf that we know has exoplanet systems. So, we can expand that model to other stars. That means that almost all stars should have planetary systems. Things like Barnard star's planetary systems tell us that the smallest red dwarfs can have multiple planets around them. Barnard's star is roughly larger than Jupiter's. And it has four planets.


https://scitechdaily.com/planet-found-orbiting-two-stars-at-a-perfect-90-degree-angle/


https://scitechdaily.com/a-century-old-cosmic-mystery-solved-four-hidden-planets-found-near-earth/

Tuesday, November 15, 2022

The quantum superposition between dwarf stars could be possible.



The binary star systems. There are two white dwarfs or neutron stars. That can use to research quantum entanglements between large quantum systems. But what is the limit for that superposition? 

Can white dwarfs turn to superposition? Or can only black holes make that phenomenon? The requirement for the information flow in quantum entanglement is that another side of the quantum entanglement is at the upper state. 

The binary star system with two white dwarfs that orbit each other causes one interesting theory. White dwarfs are mainly carbon. And their gravitation is very strong. That causes an effect where white dwarfs are pulling material to their core. There is a forming plague on the surface of those white dwarfs. 

And then that plague causes a fusion reaction and causes nova eruption. If there is another white dwarf near that erupting white dwarf, that thing causes the radiation oscillation in the other white dwarf. And that means there is the possibility that the magnetic fields of those white dwarfs are connecting. 

That causes plasma flow between those stars. That plasma flow can harvest energy from the universe. And if those stars would have enough high energy levels that plasma can turn to quantum entanglement and even superposition those objects. 

The thing is that two chemically identical stars can start to resonate with each other. If we are thinking about binary star systems with neutron stars or black holes those objects can form quantum entanglements between them. 

But the requirement for superposition is. The dwarf star's structure elementary particles' resonation (or oscillation) turns identical. Maybe the energy level of the neutron stars is not high enough for making that thing true. 

The quark stars where is only quarks could make superpositioned quantum entanglement between them. Unlike neutron stars, in quark stars, quarks are freely in the star. And if that thing is real there is the chance to research quantum entanglements between large particle groups or quantum systems. 

Of course, quantum entanglement is possible between black holes. But some other objects like white dwarfs or neutron stars may allow observing the oscillation of those particles. And it gives new information for developing quantum computing. 


https://www.sciencealert.com/remnants-of-ancient-earth-like-world-seen-being-eaten-by-a-star


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


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


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

Sunday, November 13, 2022

Remnants of 10 billion years old Earth discovered in white dwarf's atmosphere.



"Artist’s impression of the old white dwarfs WDJ2147-4035 and WDJ1922+0233 surrounded by orbiting planetary debris, which will accrete onto the stars and pollute their atmospheres. WDJ2147-4035 is extremely red and dim, while WDJ1922+0233 is unusually blue. Credit: University of Warwick/Dr. Mark Garlick" (ScitechDaily/Astronomers Discover Oldest Planetary Debris in Our Galaxy – Remnants of Destroyed Solar System")


In space is a binary star system of two white dwarfs WDJ2147-4035 and WDJ1922+0233. The age of WDJ2147-4035 is about 10,7 billion years old and it spent the 10,2 billion years cooling as a white dwarf. WDJ1922+0233 is much younger. 

And it's almost sure. That those white dwarfs impacted each other. Then they started to orbit each other. So those white dwarfs have been separated a long time ago. 

An interesting thing is that white dwarfs are remnants of the stars, quite similar to the sun.  If the red participant of the binary star WDJ2147-4035 was really like our sun, it spent an incredibly short period of its life as the star that has nuclear fusions and its energy production. That means WDJ2147-4035 produced energy for only 0,5 billion years. 

"The astronomers used spectroscopic and photometric data from GAIA, the Dark Energy Survey, and the X-Shooter instrument at the European Southern Observatory to calculate how long the stars have been cooling. They found that the ‘red’ star WDJ2147-4035 is around 10.7 billion years old, of which 10.2 billion years have been spent cooling as a white dwarf". (ScitechDaily.com/Astronomers Discover Oldest Planetary Debris in Our Galaxy – Remnants of Destroyed Solar System)

The blue participant of that system WDJ1922+0233 pushes debris to the red participant WDJ2147-4035. And that means the atmosphere of that red dwarf is polluted by planetary debris. The thing that makes this necro-planetary system interesting is that both white dwarfs might have an independent planetary system. 

The remnants of the earth-like planet in the red dwarf's atmosphere are causing interesting speculations. Necroplanetology means that science research the remnants of exoplanets near dead stars. The most interesting of the star types are white dwarfs because they were once like the sun. 

And if there is some kind of civilization in the universe that is more advanced than humans. Remnants of that civilization could be found near white dwarfs. If that hypothetical civilization wants to stay alive after the star erupts as a nova. 

They must create an interstellar flight. But in that case, those civilizations would not return. And that means they must make only space arcs. The generations would change in the spacecraft fleet that speed is about 0,1-50% of the speed of light. 

Or create giant space stations that would go to the shadows of those planets. In that case, planets could protect giant O'Neill cylinders where those creatures are moving when they cannot stay on their planets. 

When we are thinking about that earth-like planet remnant in that white dwarf system that is 90 light years away from Earth there is the possibility that the origin of that planet is somewhere else than in this binary dwarf-star system. 

By the way...

What is the difference between nova and supernova? Nova can mean many types of stellar explosions. But one determination for nova is that is the end of the life of the star that is too small for forming neutron stars. So, if the result of the star's last explosion is a white dwarf. We should talk about nova. But from the Wikipedia page about nova, you can read more about that eruption. 

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


https://www.sciencealert.com/necroplanetology-the-study-of-planets-dismembered-remains


https://www.sciencealert.com/remnants-of-ancient-earth-like-world-seen-being-eaten-by-a-star


https://scitechdaily.com/astronomers-discover-oldest-planetary-debris-in-our-galaxy-remnants-of-destroyed-solar-system/


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


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

Astronomers could have a model for why photons from GRB 221009A were at a high energy level.

"An illustration shows a photon from the biggest cosmic explosion since the Big Bang reaching Earth. (Image credit: Robert Lea (created...