
An anomalous asymmetry in the cosmos opens a new investigation line.
American cosmologists have detected what you/they could be the prints of another universe that I collide soon after with ours of Big Bang. These investigators point out that the existence of other universes could be demonstrated thanks to the measurement of the background radiation of microwaves, since, if in the start of our universe, this had colisionado with other universes, hypothetically such a shock would be registered in the distribution of this radiation. Up to now nobody has tried to search this abnormality, but the authors of this studio have found an anomalous attractive asymmetry at least in the cosmos that, although they don't dare to affirm that it is about the print of another universe, they consider that this hypothesis can be the beginning of a long investigation project.
If other universes exist apart from ours, these could be detectables, they predict scientific in a new studio whose results have been published in the magazine Physical Review D. In this studio, Matthew C. Johnson and their accessories, Anthony Aguirre and Assaf Shomer, of the university of California in Santa Cruz, explains that they have evaluated the possibility that some goods observables or "trademarks" distinguibles that other universes had left in ours exist, due to collisions among them happened in the time in that our universe was even very recent.
The idea that other universes exist it is disputed in the current cosmology. If they really existed, the most probable thing is that they are not perceptible and it would be very difficult to sample their existence. What contributes the new studio is the hypothesis that, if they really existed other universes that colisionaron with ours, hypothetically we would putrefy today to detect their appearance, what constitutes a momentous discovery in the authors' of this studio opinion.
At the same time, these investigators recognize that the consequences of that eventual collision among universes continue being an open issue, since, although it is considered that if there was collision among universes both they would have been destroyed, what these scientists offer is a new approach.
Johnson has declared in this respect to the magazine World Science that is still to define what type of sequels it would be necessary to search to confirm the shock among the universes. Some physical theories point out that other universes really exist, called universes bubble and that each one of them has their own features and even securities different from the physical constants.
To demonstrate the transmultiversalidad
After the idea of the universes bubble it underlies the hypothesis that, seemingly, the whole space contains energy, the call energy of the hole, that is a background energy of purely quantum origin and responsible for physical measurable goods, as the effect Cashmere (it forces physics exercised among separate objects due to the resonance of the energy fields in the space among the objects).
Some cosmologists have offered that, if they occur certain circumstances, this energy can grow in an explosive way giving place to a new universe .como it happened with ours -. This could be happening continually, generating many universes that would coexist with the one that we know in the same way that the bubbles coexist in a foamy bathroom.
To analyze the radiation of the cosmic bottom
But how to know it? Johnson and their colleagues believe that any encounter or collision among the universes goods that would spread in both addresses would have taken place. This goods maybe left prints in the form of expelled material that you/they could affect to the distribution of the matter in each affected universe.
If a collision type had happened this way recently, from the temporary perspective of our universe, it would be undetectable since the universe is too extensive as so that it is notably affected. However, if the facts happened a long time ago, that is to say, when the universe was even very petty, the trademark could be even visible when having been expanded.
When the universe measured on or about less than a thousandth part of what measures currently, it is believed that it suffered a transformation. As it was expanding, he/she cooled down enough as so that they were formed the atoms. Then he/she became transparent.
Before this, the universe had consisted on a consistent fog with petty variances of density in diverse points. The densest parts continued increasing and when uniting they gave place to the galaxies.
Pending investigations
But this fog is even visible because we receive many of the light waves that took place in that moment in her now and they are observables in the form of a weak splendor that fills universe completely.
These waves have been named background radiation of microwaves that is a form of electromagnetic radiation considered by many cosmologists like the main test of the cosmological pattern of Big Bang that gave place to the universe. This radiation is considered the edge of our well-known universe also.
The astronomers outline that a collision among universes would putrefy generated book credit a standard that would have reordered the fluctuations of density in these circumstances and that, if it could register this reordering, he/she would appear as an area of symmetrical abnormality.
Up to now nobody has tried to search this abnormality, but the authors of this studio have found an anomalous attractive asymmetry at least in the cosmos that, although they don't dare to affirm that it is about the print of another universe, they consider that this hypothesis can be the beginning of a long investigation project.
The case is that the variances of temperature in the cosmic bottom of microwaves are believed that they reflect the variances of density in the primitive universe, but they would be still to make numerous investigations to be able to arrive to an answer.