Wednesday, April 27, 2016

The Hitchhiker's Guide toThe Hitchhiker's Guide to Quantum Field Theory Matthew Buckley Field Theory Matthew Buckley

Photo: Ineke Huizing
This series explores an anomaly CERN scientists announced last December at the Large Hadron Collider (LHC), where protons are smashed together very close to the speed of light. My first installment explained how two detectors observed results at odds with predictions of the Standard Model. In the jargon of the field, they found a “diphoton excess at 750 GeV.” (My first piece explains what that means.)
This might be a very big deal. The Standard Model, which has withstood all experimental challenges for forty years, is our best theory of the fundamental particles that make up the matter and forces we know about. If the anomaly holds up, we will have come face to face with the Standard Model’s limitations.
But that’s a big “if.” The results are too preliminary for us to say anything for sure right now. Fortunately, CERN restarted the LHC experiments this month and is expected to make another announcement this summer. The new data may show that the anomaly was just statistical noise, but whatever happens, there is much to be learned from these efforts to probe the edges of our understanding. We may learn something about Nature, or we may learn that the existing theory has survived yet another test. In either case, by following how science gets done you can see why it is so exciting—the process as well as the results.
In the lead up to this summer’s announcement, I will take you through our present understanding of particle physics: the Standard Model, the Higgs boson, and why we suspect there is something beyond the Standard Model for the LHC to find. To do that, I need to give you a way to picture how the Universe works at these incredibly small scales. This second installment lays the foundation by exploring the basic language of particle physics. That language is called quantum field theory, but it is not so much a specific theory as the framework for all our fundamental theories of Nature, both the well tested (quantum electrodynamics and quantum chromodynamics, which are parts of the Standard Model) and the more speculative (supersymmetry and quantum gravity).
• • •
The quantum world is strange. On small scales, particles can act like waves, objects can tunnel straight through solid walls, and the more you know about where something is, the less you know how fast it is going. Thanks to these bizarre phenomena, the word “quantum” is often synonymous with “magic” in films, books, and popular culture. (This attitude sadly abused by many charlatans who wish to wrap themselves in the trappings of science.) It is not magic, of course, but it is genuinely hard to understand. It was the great Danish physicist and Nobel Laureate Niels Bohr who said, “Anyone who is not shocked by quantum theory has not understood it.” There are indeed fundamental questions about the behavior of physics at the smallest scales that we do not have satisfying answers to—yet.
Quantum field theory is the basic language of the most accurate physical theory yet devised.
However, our understanding of the quantum world has grown enormously since Bohr’s time. Indeed, there are important differences between the quantum mechanics developed in the early twentieth century and the quantum field theory I will talk about here. We still use the former in many situations, not only in physics but also engineering: your computer relies on the “magic” of quantum mechanics for its existence. But the latter is a deeper, more fundamental theory, what you get when you require quantum mechanics to abide by the rules of Einstein’s theory of special relativity—the description of what happens when things are moving near the speed of light. Special relativity is the theory that gives us the most famous equation in history, E = mc2, which tells us that mass can be converted to energy and vice versa. As a result, any theory that includes special relativity must be able to deal with the creation or destruction of particles. Quantum mechanics could not accommodate this possibility; quantum field theory can.
When you use the rules of quantum field theory to make calculations, it is truly incredible. It has enabled us to formulate the most precise scientific theory ever devised, capable of making predictions to one part in a trillion. I will try to explain some of those rules, to give a picture of how I think about things and their interactions at these incredibly small scales (and very high speeds). For example, how should you picture what’s going on when a physicist says “at the LHC, we collided two protons traveling close to the speed of light and created a Higgs boson; it lasted for roughly 10−22 seconds before decaying into some photons”?
I will evade the philosophical questions that lurk at the heart of the quantum world: questions about the reality of the wavefunction, hidden variables, or multiverses. In my day-to-day working life, I take the attitude that is sometimes summed up as “shut up and calculate.” The philosophical questions are interesting and important, but I do not need to answer them to carry out my research. From this vantage point, I will give you a sense of how I view the quantum world: how particles move and how they interact with each other. Of course this won’t give you a deep working knowledge of quantum field theory, but my goal is to convey some useful analogies for making sense of what goes on at the LHC.
Fields and Quantum Fields
The fundamental problem we face when we try to visualize quantum behavior is how to describe what things are. Consider electrons, photons, and quarks. Are they particles or waves? We think of particles as pointlike things that have a definite location—small billiard balls, say. Waves, by contrast, ripple out through space and exhibit behavior such as diffraction and interference.
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Tuesday, April 26, 2016

QUITO, Ecuador magnitude-7.8 earthquake has risen to 654

QUITO, Ecuador –  Ecuador's government says the death toll from last week's devastating magnitude-7.8 earthquake has risen to 654 with another 58 people missing.

The website of the secretariat for risk management said Saturday that 113 people had been rescued alive following the quake that flattened coastal towns and more than 25,000 people remained in shelters.

The death toll from Ecuador's quake has surpassed that of Peru's 2007 temblor, making it the deadliest quake in South America since one in Colombia in 1999 killed more than 1,000 people.
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http://www.foxnews.com/world/2016/04/24/death-toll-in-powerful-ecuador-earthquake-rises-to-654.htmRead more:






Sunday, April 24, 2016

Godspeed You Black Emperor - The Dead Flag Blues








the car's on fire and there's no driver at the wheel
and the sewers are all muddied with a thousand lonely suicides
and a dark wind blows
the government is corrupt
and we're on so many drugs
with the radio on and the curtains drawn
we're trapped in the belly of this horrible machine
and the machine is bleeding to death
the sun has fallen down
and the billboards are all leering
and the flags are all dead at the top of their poles
it went like this:
the buildings tumbled in on themselves
mothers clutching babies picked through the rubble
and pulled out their hair
the skyline was beautiful on fire
all twisted metal stretching upwards
everything washed in a thin orange haze
i said: "kiss me, you're beautiful -
these are truly the last days"
you grabbed my hand and we fell into it
like a daydream or a fever
we woke up one morning and fell a little further down -
for sure it's the valley of death
i open up my wallet
and it's full of blood

Wednesday, January 20, 2016

St. Elijah's Monastery of Mosul has been completely wiped out. For 1,400 years the compound survived assaults by nature and man, standing as a place of worship


Iraq's oldest Christian monastery that has stood for 1,400 years is destroyed in seconds: Satellite image reveals how ISIS reduced sacred site to rubble

  • Dair Mar Elia, known as St. Elijah's Monastery in English, has been completely levelled by ISIS 
  • The monastery, located south of Mosul, northern Iraq, was built in the 600s, making it 1,400 years old
  • It was Iraq's oldest Christian monastery and had recently functioned as a  place of worship for U.S. troops
  • For more of the latest Islamic State news visit www.dailymail.co.uk/isis

  • These persecutions have happened to our church more than once, but we believe in the power of truth, the power of God,' said Boji. 
    He is part of the Detroit area's Chaldean community, which became the largest outside Iraq after the sectarian bloodshed that followed the U.S. invasion in 2003. Iraq's Christian population has dropped from 1.3 million then to 300,000 now, church authorities say.
    The destruction of the monastery is a blow for U.S. troops and advisers who served in Iraq and had tried to protect and honor the site, a hopeful endeavor in a violent place and time.
    Suzanne Bott, who spent more than two years restoring St. Elijah's Monastery as a U.S. State Department cultural adviser in Iraq, reportedly cried when she saw the images.
    'Oh no way. It's just razed completely,' said Bott. 'What we lose is a very tangible reminder of the roots of a religion.'
    Army reserve Col. Mary Prophit remembered a sunrise service in St. Elijah where, as a Catholic lay minister, she served communion.
    'I let that moment sink in, the candlelight, the first rays of sunshine. We were worshipping in a place where people had been worshipping God for 1,400 years,' said Prophit, who was deployed there in 2004 and again in 2009.
    'I would imagine that many people are feeling like, 'What were the last 10 years for if these guys can go in and destroy everything?'' said Prophit, a library manager in Glenoma, Washington.  By ASSOCIATED PRESS


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Tuesday, November 24, 2015

God Particle Could Destroy Universe, Warns Stephen Hawking

The 'God Particle' discovered by scientists in 2012 has the power to destroy the universe, Professor Stephen Hawking has warned.
The physicist said that at very high energy levels the Higgs boson could become unstable, causing a "catastrophic vacuum decay" that would cause space and time to collapse.
The possibility of this happening is extremely unlikely, he stresses, as scientists do not yet have a particle accelerator large enough to create such conditions.
He makes the comments in a new book Starmus: 50 Years of Man in Space, a collection of essays by scientists and astronomers.
"The Higgs potential has the worrisome feature that it might become megastable at energies above 100bn giga-electron-volts (GeV)," Professor Hawking writes.
"This could mean that the universe could undergo catastrophic vacuum decay, with a bubble of the true vacuum expanding at the speed of light.
"This could happen at any time and we wouldn't see it coming."

Monday, August 24, 2015

High-energy LHC plans held up by UFOs and electron clouds "via newscientist.com"By Jacob Aron







High-energy LHC plans held up by UFOs and electron clouds

Slowly gathering energy (Image: Pascal Boegli/Getty)




High-energy LHC plans held up by UFOs and electron clouds




High-energy LHC plans held up by UFOs

and  electron clouds 

By Jacob Aron








Kicking the world’s largest machine into overdrive is turning out to
be harder than expected. Researchers at the Large Hadron Collider at
CERN, near Geneva in Switzerland, say that plans to run their physics
experiments at higher energies are likely to be delayed until next year.


The LHC was rebooted in April,
after a two-year shutdown to upgrade the machine. In the second run, it
should be able to gather physics data at energies of 13
teraelectronvolts, the highest-energy collisions of particle beams ever.
But researchers in charge of getting it up and running again, who this
week presented the first report on the LHC’s performance at a conference in Ljubljana, Slovenia, have revealed that things haven’t quite gone as planned.


“The process is slightly slower than we would have hoped,” says Paul
Collier, the LHC’s head of beams. Clouds of electrons created by ionised
gas in the beam chamber and microscopic dust particles – playfully
known as unidentified falling objects, or UFOs – are interrupting the
beams and making it harder to get the LHC running consistently.


These effects were present in the LHC’s previous run, but the higher
energies, plus efforts to produce more frequent collisions by bunching
particles in the beam closer together, make them a larger problem than
before.


Collier says the team had anticipated such potential issues, but they
have taken some time to deal with. He compares it to driving a car at
high speed: although you might be fine at 50 kilometres per hour, things
start rattling when you reach 150 kph. “Everything is much closer to
the limits of what the equipment can do, so the machine is less
forgiving,” he says.


Reboot hitch

It’s not the first problem this year: a short circuit in March
delayed the reboot. The team is only a few weeks behind schedule in
preparing beams for the LHC’s various experiments. But because the
quality of the beam gets better and more stable the longer it runs,
there won’t be time this year to reach peak physics. “Each stage is
vastly superior to everything that happens before it, so it’s only
towards the end of this process that you’re really mass-producing data,”
says Collier.


The researchers now expect to only reach 3 inverse femtobarns (3 fb-1) – the esoteric measurement of beam quality – this year, down from a planned 10. To put this in context, the long-sought Higgs boson was discovered after the LHC reached 12 fb-1.


But they are still on target to reach 30 fb-1 next year,
once they understand how to handle their souped-up collider. “We’re
learning an awful lot that will help us run the machine even better,”
says Collier. “I have good hopes for 2016.”

By Jacob Aron



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Symmetry...Opera ritual dance preformed by its physicist inside CERN before firing up in March/April,2015

Great opera dance preformed by its physicist,inside CERN before firing up in March/April,2015. Called Symmetry. I think you get a picture of what they are looking for . ..... Pow Wow Ritual Dancer's are better, it  brings rain not portals.






Dancing with Shiva ! Dr. Stephen Hawking recently warned that the reactivation in March of CERN’s large hadron collider could pose grave dangers to our planet…the ultimate reality check we are warned. Hawking has come straight out and said the ‘God particle’ found by CERN “could destroy the universe” leaving time and space collapsed . Is CERN the most dangerous thing in the cosmos that could lead to the ultimate destruction of the Earth and the entire universe? Recent developments prove to us the scientific community is no longer able to explain ‘reality’ without looking at the ‘supernatural’. Will we soon learn CERN is really the ‘ultimate stargate’ and one of the gate-keepers most closely guarded secrets? Will this be the way man attempts to break the ultimate ‘God barrier’, an attempt to encounter demi-God’s in an all-out rush towards the destruction of all creation? We understand they won’t be releasing the secrets until they’re prepared to release them.