Showing posts with label LHC. Show all posts
Showing posts with label LHC. Show all posts

2011-03-18

The LHC Could Cause Matter to Travel in Time

Large Hadron Collider could be world’s first time machine | Research News @ Vanderbilt | Vanderbilt University



If the latest theory of Tom Weiler and Chui Man Ho is right, the Large Hadron Collider – the world’s largest atom smasher that started regular operation last year – could be the first machine capable of causing matter to travel backwards in time.

“Our theory is a long shot,” admitted Weiler, who is a physics professor at Vanderbilt University, “but it doesn’t violate any laws of physics or experimental constraints.”

One of the major goals of the collider is to find the elusive Higgs boson: the particle that physicists invoke to explain why particles like protons, neutrons and electrons have mass. If the collider succeeds in producing the Higgs boson, some scientists predict that it will create a second particle, called the Higgs singlet, at the same time.

According to Weiler and Ho’s theory, these singlets should have the ability to jump into an extra, fifth dimension where they can move either forward or backward in time and reappear in the future or past.

“One of the attractive things about this approach to time travel is that it avoids all the big paradoxes,” Weiler said. “Because time travel is limited to these special particles, it is not possible for a man to travel back in time and murder one of his parents before he himself is born, for example. However, if scientists could control the production of Higgs singlets, they might be able to send messages to the past or future.”

Illustration of singlet time travel theory. When a pair of protons collide in the Large Hadron Collider, the resultant explosion may create a special type of particle, called a Higgs singlet, that is capable of traveling forward and back in time. It would do so by leaving familiar three-dimensional space to travel in an extra dimension. (Jenni Ohnstad / Vanderbilt)

Weiler and Ho’s theory is based on M-theory, a “theory of everything.” A small cadre of theoretical physicists have developed M-theory to the point that it can accommodate the properties of all the known subatomic particles and forces, including gravity, but it requires 10 or 11 dimensions instead of our familiar four. This has led to the suggestion that our universe may be like a four-dimensional membrane or “brane” floating in a multi-dimensional space-time called the “bulk.”


Higgs boson - Wikipedia, the free encyclopedia

The Higgs boson is a hypothetical massive elementary particle predicted to exist by the Standard Model of particle physics. The existence of the particle is postulated as a means of resolving inconsistencies in current theoretical physics, and attempts are being made to confirm the existence of the particle by experimentation, using the Large Hadron Collider (LHC) at CERN and the Tevatron at Fermilab.
A simulated event, featuring the appearance of the Higgs boson


Introduction to M-theory - Wikipedia, the free encyclopedia

[...]
In the 1980s, a new mathematical model of theoretical physics called string theory emerged. It showed how all the particles, and all of the forms of energy in the universe, could be constructed by hypothetical one-dimensional "strings", infinitely small building-blocks that have only the dimension of length, but not height nor width. Further, string theory suggested that the universe is made up of multiple dimensions. Height, width, and length constitute three-dimensional space, and time gives a total of four observable dimensions; however, string theories initially supported the possibility of ten dimensions – the remaining six of which we cannot detect directly. This was later increased to 11 dimensions based on various interpretations of the ten dimensional theory that led to five partial theories as described below. Super-gravity theory also played a significant part in establishing the existence of the 11th dimension.
[...]
In the mid-1990s, a string theorist named Edward Witten of the Institute for Advanced Study and other important researchers considered that the five different versions of string theory might be describing the same thing seen from different perspectives. They proposed a unifying theory called "M-theory", in which the "M" is not specifically defined, but is generally understood to stand for "membrane".



2010-11-20

Discovering New Dimensions at LHC




Why is gravity so weak? The traditional answer is because the fundamental scale of the gravitational interaction (i.e. the energy at which gravitational effects become comparable to the other forces) is up at the Planck scale of around 1019 GeV - far higher than the other forces. However, that only raises another question: what is the origin of this huge disparity between the fundamental scale of gravity and the scale of the other interactions?

A possible explanation currently gaining ground in theoretical circles is that the fundamental scale of gravity is not really up at the Planck scale, it just seems that way. According to this school of thought, what is actually happening is that gravity, uniquely among the forces, acts in extra dimensions. This means that much of the gravitational flux is invisible to us locked into our three dimensions of space and one of time.

Proof of extra dimensions possible next year: CERN | Reuters



(Reuters) - Scientists at the CERN research center say their "Big Bang" project is going beyond all expectations and the first proof of the existence of dimensions beyond the known four could emerge next year.



The Atlas experiment, which analyses the results of proton collisions inside the Large Hadron Collider (LHC), is designed to observe phenomena involving massive particles, such as the Higgs boson, extra dimensions, and particles that could make up 'dark matter' — all of which have previously been unobservable with lower-power particle accelerators.

Fabiola Gianotti, lead researcher on the Atlas experiment — one of six particle-accelerator experiments taking place at Cern — said in a report published on the Cern website on Monday that the project has produced results even more quickly than expected.

[,,,]

Gianotti said that future research, such as probing for extra dimensions, could yield results sooner than she had predicted. "In just a few months of data taking, Atlas has observed the known elementary particles, up to the heavy W and Z Bosons and the even heavier top quark," she wrote.







2008-07-21

About The Large Hadron Collider (LHC)

The Large Hadron Collider (LHC) at CERN will become the world's largest and highest-energy particle accelerator. Its main purpose is to explore the validity and limitations of the standard model, the current theoretical picture for particle physics. Concerns, however, have been raised regarding the safety of the LHC on the grounds that it might produce dangerous phenomena, including micro black holes.
clipped from lhc.web.cern.ch
LHC - THE LARGE HADRON COLLIDER
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What is the LHC, or Large Hadron Collider?
The Large Hadron Collider is a particle accelerator complex spanning the border between Switzerland and France near Geneva. LHC will smash together opposing beams of either protons or lead ions inside a massive circular accelerator.
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large hadron collider diagram


Recreating the Big Bang?

With the start of the Large Hadron Collider coming closer, the topic is present in the media more than ever. A commonly used motivation is the alleged recreation of the Big Bang


clipped from backreaction.blogspot.com
Bottomline

The LHC is not a Big Bang machine. It is more accurate to say that with the heavy ion program at the LHC we will be able to create conditions closer to that in the early universe than ever before.

[1] For extensive explanation why it is implausible the LHC will cause the end of the world, see: Black Holes at the LHC - The CERN Safety report, Black Holes at the LHC - again, and Black Holes at the LHC - What can happen?
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Brian Cox: What really goes on at the Large Hadron Collider
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Related:
LHC_Homepage
Large Hadron Collider - Wikipedia, the free encyclopedia
What Is The Large Hadron Collider
symmetry - August 2006 - Deconstruction: Large Hadron Collider
Backreaction: Recreating the Big Bang?
Large Hadron Collider Could Generate Dark Matter | Universe Today
Big Bang at the atomic lab after scientists get their maths wrong - Times Online

2008-02-06

Beyond Four Dimensional Space-Time

According to some advanced physical theories more than our four dimensional space-time dimensions are needed for a complete description of the physical universe. The nearly-completed Large Hadron Collider (LHC) may be able to provide insight in the shape of these alternate dimensions.

Large Hadron Collider May Help Us Glimpse Into another Dimension

High energy collisions could create particles that bounce off the walls of other dimensions… (credit: New Scientist)
High energy collisions by the nearly-completed Large Hadron Collider (LHC) may be able to generate particles that are sensitive to dimensions beyond our four dimensional space-time. These exotic particles, called Kaluza-Klein gravitons, would be highly sensitive to the geometry of extra-dimensions, giving scientists an idea about what lies beyond our universe. If these particles are detected, and if their characteristics can be measured, then perhaps the extra dimensions predicted by string theory may be proven to exist…
ScienceDaily: Your source for the latest research news  and science breakthroughs -- updated daily

Particle Accelerator May Reveal Shape Of Alternate Dimensions

ScienceDaily (Feb. 4, 2008) — When the world's most powerful particle accelerator starts up later this year, exotic new particles may offer a glimpse of the existence and shapes of extra dimensions.

Adds Underwood, "If the cosmology and particle physics data agree, it's an indication we're on the right track."


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Related:
Universe Today » Large Hadron Collider May Help Us Glimpse Into another Dimension
Particle Accelerator May Reveal Shape Of Alternate Dimensions
String theory - Wikipedia, the free encyclopedia
LinkNotes: Search results for string
LinkNotes: Testing a "Theory of Everything"
LinkNotes: More about the New 'Theory of Everything'
LinkNotes: A New 'Theory of Everything'
LinkNotes: String Theory in Two Minutes (video)
LinkNotes: Extra spatial dimensions
Physicists Develop Test for 'String Theory'