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Physicists propose search for fourth neutrino

(PhysOrg.com) -- Physicists know that neutrinos (and antineutrinos) come in three flavors: electron, muon, and tau. In several experiments, researchers have detected each of the neutrino flavors and even watched ...

Physics / General Physics

created Nov 29, 2011 | popularity 4.8 / 5 (31) | comments 41 | with audio podcast feature

First result from a new generation of reactor neutrino experiments

Physicists of the Double Chooz experiment detected a short-range disappearance of electron antineutrinos. They presented this result on Wednesday 9 November 2011 at the LowNu conference in Seoul, Korea. It helps determine ...

Physics / General Physics

created Nov 09, 2011 | popularity 5 / 5 (5) | comments 0

Rare particle decay could mean new physics

(PhysOrg.com) -- An incredibly rare sub-atomic particle decay might not be quite as rare as previously predicted, say Cornell researchers. This discovery, culled from a vast data set at the Collider Detector at Fermilab (CDF), ...

Physics / General Physics

created Aug 23, 2011 | popularity 4.6 / 5 (22) | comments 27 | with audio podcast

Physicists closing in on the elusive Higgs boson

Scientists at a meeting in Grenoble, France, recently stoked speculation that physicists at the world's biggest particle accelerator may soon provide a first look at the elusive Higgs boson - the final piece of evidence needed ...

Physics / General Physics

created Aug 17, 2011 | popularity 5 / 5 (6) | comments 26

A hint of Higgs: An update from the LHC

The physics world was abuzz with some tantalizing news a couple of weeks ago. At a meeting of the European Physical Society in Grenoble, France, physicists -- including some from Caltech -- announced that ...

Physics / General Physics

created Aug 16, 2011 | popularity 4.6 / 5 (36) | comments 57 | with audio podcast

Fermilab experiment weighs in on neutrino mystery

Scientists of the MINOS experiment at the Department of Energy's Fermi National Accelerator Laboratory announced today (June 24) the results from a search for a rare phenomenon, the transformation of muon ...

Physics / General Physics

created Jun 24, 2011 | popularity 4.9 / 5 (9) | comments 10 | with audio podcast

Meeting the Higgs hunters

With CERN's Large Hadron Collider (LHC) now being fired up after its winter shutdown, physicists at the Geneva lab are gearing up for the first signs of the Higgs boson -- the never-before-seen particle that is one of the ...

Physics / General Physics

created Mar 02, 2011 | popularity 4.3 / 5 (3) | comments 8

Muon makes tracks in EXO-200 detector

(PhysOrg.com) -- The Enriched Xenon Observatory-200, a prototype observatory that will search for exotic decays of fundamental particles of matter, passed a significant if unofficial milestone last month: ...

Physics / General Physics

created Feb 01, 2011 | popularity 4.5 / 5 (2) | comments 0 | with audio podcast

Weak nuclear force is less weak

The force that governs some of the reactions that keep our sun shining is not quite as weak as scientists had previously thought. As a consequence, our estimation of how energetic the sun actually is just ...

Physics / General Physics

created Jan 13, 2011 | popularity 4.7 / 5 (22) | comments 58 | with audio podcast

Researchers continue search for elusive new particles at CERN

Though sought at much higher energies than before, researchers at Texas Tech University associated with a Compact Muon Solenoid (CMS) experiment at CERN’s Large Hadron Collider (LHC) continue to seek the elusive new ...

Physics / General Physics

created Dec 02, 2010 | popularity 5 / 5 (3) | comments 0

Extra large galactic survey puts limits on ultralight particles

Physicists have long known that neutrinos are among the lightest and most evasive fundamental particles. Now a survey of the galaxies is helping to narrow down the neutrino mass even further. It seems that ...

Physics / General Physics

created Jul 12, 2010 | popularity 4.6 / 5 (16) | comments 0 | with audio podcast

Scientists see evidence that rules of particle physics may need a rewrite

(PhysOrg.com) -- Two separate collaborations involving Indiana University scientists have reported new results suggesting unexpected differences between neutrinos and their antiparticle brethren. These results ...

Physics / General Physics

created Jun 24, 2010 | popularity 4.6 / 5 (36) | comments 14 | with audio podcast

Particle collision thought to replicate Big Bang forces, may help explain how things exist

By the logic of science, things simply shouldn't exist. The best scientific minds of several generations have reasoned that shortly after the Big Bang created the universe, matter and antimatter should have wiped each other ...

Physics / General Physics

created Jun 02, 2010 | popularity 3.7 / 5 (22) | comments 30

The First T2K Neutrino Event Observed At Super-Kamiokande

(PhysOrg.com) -- Physicists from the Japanese-led multinational T2K collaboration announced today that they had made the first detection of a neutrino which had travelled all the way under Japan from their ...

Physics / General Physics

created Feb 25, 2010 | popularity 5 / 5 (19) | comments 1 | with audio podcast

CDF and D0 joint paper puts a further squeeze on the Higgs

Almost a decade after the experiments at CERN’s Large Electron-Positron (LEP) collider set a limit on the mass of the Higgs boson of 114.4 GeV/c2, the two experiments at Fermilab’s Tevatron, CDF and D0 have ...

Physics / General Physics

created Feb 24, 2010 | popularity 4.2 / 5 (5) | comments 8 | with audio podcast

Muon

The muon (pronounced /ˈmjuːɒn/; from the Greek letter mu (μ) used to represent it) is an elementary particle similar to the electron, with a unitary negative electric charge and a spin of ½. Together with the electron, the tau, and the three neutrinos, it is classified as a lepton. As is the case with other leptons, the muon is not believed to have any sub-structure at all (i.e., is not thought to be composed of any simpler particles).

The muon is an unstable subatomic particle with a mean lifetime of 2.2 µs. This comparatively long decay life time (the second longest known) is due to being mediated by the weak interaction. The only longer lifetime for an unstable subatomic particle is that for the free neutron, a baryon particle composed of quarks, which also decays via the weak force. All muons decay to three particles (an electron plus two neutrinos of different types), but the daughter particles are believed to originate newly in the decay.

Like all elementary particles, the muon has a corresponding antiparticle of opposite charge but equal mass and spin: the antimuon (also called a positive muon). Muons are denoted by μ− and antimuons by μ+. Muons were previously called mu mesons, but are not classified as mesons by modern particle physicists (see History).

Muons have a mass of 105.7 MeV/c2, which is about 200 times the mass of an electron. Since the muon's interactions are very similar to those of the electron, a muon can be thought of as a much heavier version of the electron. Due to their greater mass, muons are not as sharply accelerated when they encounter electromagnetic fields, and do not emit as much bremsstrahlung radiation. This allows muons of a given energy to penetrate far more deeply into matter than electrons, since the deceleration of electrons and muons is primarily due to energy loss by the bremsstrahlung mechanism. As an example, so-called "secondary muons", generated by cosmic rays hitting the atmosphere, can penetrate to the Earth's surface, and even into deep mines.

Because muons have a very large mass and energy compared with the decay energy of radioactivity, they are never produced by radioactive decay. They are, however, produced in copious amounts in high-energy interactions in normal matter, such as occur during certain particle accelerator experiments with hadrons, and also naturally in cosmic ray interactions with matter. These interactions usually first produce pi mesons, which then most often decay to muons.

As with the case of the other charged leptons, the muon has an associated muon neutrino. Muon neutrinos are denoted by ν μ.

For more information about Muon, read the full article at Wikipedia.
This text uses material from Wikipedia and is available under the GNU Free Documentation License.

Related topics: neutrinos