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Scientists stop light
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Scientists stop light
'There is a greater darkness than the one we fight. It is the darkness of the soul that has lost its way. The war we fight is not against powers and principalities, it is against chaos and despair. Greater than the death of flesh is the death of hope, the death of dreams. Against this peril we can never surrender. The future is all around us, waiting, in moments of transition, to be born in moments of revelation. No one knows the shape of that future or where it will take us. We know only that it is always born in pain.'"
G'Kar - from Babylon 5 episode "Z'ha'dum"Tags: None
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I can stop light too.Christianity: The belief that a cosmic Jewish Zombie who was his own father can make you live forever if you symbolically eat his flesh and telepathically tell him you accept him as your master, so he can remove an evil force from your soul that is present in humanity because a rib-woman was convinced by a talking snake to eat from a magical tree...
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Couldn't possibly be, Azazel. Everyone knows that Soviet scientists couldn't do anything right.Christianity: The belief that a cosmic Jewish Zombie who was his own father can make you live forever if you symbolically eat his flesh and telepathically tell him you accept him as your master, so he can remove an evil force from your soul that is present in humanity because a rib-woman was convinced by a talking snake to eat from a magical tree...
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I can stop light too - by clicking off the switch.____________________________
"One day if I do go to heaven, I'm going to do what every San Franciscan does who goes to heaven - I'll look around and say, 'It ain't bad, but it ain't San Francisco.'" - Herb Caen, 1996
"If God, as they say, is homophobic, I wouldn't worship that God." - Archbishop Desmond Tutu
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This is from early last year
Researchers in the United States and Korea have brought light to a complete standstill in a crystal. The pulse is effectively held within the solid, ready to be released at a later stage.
This trick could be used to store information in a quantum computer1.
Normal computers store information in simple binary form (1's and 0's) in electronic and magnetic devices. Stationary light pulses can encode information in more sophisticated ways that use the laws of quantum mechanics, making information processing more powerful.
Light moves at 186,000 miles per second through empty space, and was first stopped in its tracks at the beginning of last year. In those experiment, a vapour of metal atoms was shown to act like molasses on a passing light beam2,3.
Now Philip Hemmer, of the Air Force Research Laboratory at Hanscom Air Force Base in Massachusetts, and his colleagues have halted light in a crystal of yttrium silicate containing a few atoms of the element praseodymium.
Light-stopping solids would be much easier to incorporate into faster, more powerful computers than extremely cold gases. So the advance could aid information technology in much the same way that solid-state diodes and transistors made electronics more compact and robust than it could be with vacuum tubes.
Light slows down very slightly when it passes into any substance from a vacuum. The greater the refractive index of the material, the slower the light becomes. To make laser light travel very slowly, researchers manipulate the way that light and matter interact in a substance.'
Hemmer's team use a second laser beam to excite atoms in a substance to new energy states. Light can be considered to propagate through a material by being sequentially absorbed and re-emitted by atoms. The second beam manipulates this process so that it becomes more and more difficult for the light to make the step from one atom to the next.
The second beam couples the light pulse to the atoms. When shackled to these heavy objects, the pulse slows down. If this coupling is strong enough, the pulse comes to rest and all its energy is transferred to the atoms.
A light pulse that is brought to a standstill is not destroyed. The atoms 'remember' it, so the pulse can be regenerated by changing the intensity of the coupling laser to allow the atoms to re-emit photons - the particles of which light is composed.
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Probably using the same techniques as the Russian scientist; manipulating refractive and absorbtion properties of solids to stop light when it hits a surface without absorbing it's energy. Strange, not a whole lot on the material science of this matter, but then it would be patentable.
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