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Quantum teleportation achieved over ten miles of free space 
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Quantum teleportation achieved over ten miles of free space
By Casey Johnston | Last updated 4 days ago
Quantum teleportation has achieved a new milestone or, should we say, a new ten-milestone: scientists have recently had success teleporting information between photons over a free space distance of nearly ten miles, an unprecedented length. The researchers who have accomplished this feat note that this brings us closer to communicating information without needing a traditional signal, and that the ten miles they have reached could span the distance between the surface of the earth and space.

As we've explained before, "quantum teleportation" is quite different from how many people imagine teleportation to work. Rather than picking one thing up and placing it somewhere else, quantum teleportation involves entangling two things, like photons or ions, so their states are dependent on one another and each can be affected by the measurement of the other's state.

When one of the items is sent a distance away, entanglement ensures that changing the state of one causes the other to change as well, allowing the teleportation of quantum information, if not matter. However, the distance particles can be from each other has been limited so far to a number of meters.

Teleportation over distances of a few hundred meters has previously only been accomplished with the photons traveling in fiber channels to help preserve their state. In this particular experiment, researchers maximally entangled two photons using both spatial and polarization modes and sent the one with higher energy through a ten-mile-long free space channel. They found that the distant photon was still able to respond to changes in state of the photon they held onto even at this unprecedented distance.

However, the long-distance teleportation of a photon is only a small step towards developing applications for the procedure. While photons are good at transmitting information, they are not as good as ions at allowing manipulation, an advancement we'd need for encryption. Researchers were also able to maintain the fidelity of the long-distance teleportation at 89 percent— decent enough for information, but still dangerous for the whole-body human teleportation that we're all looking forward to.


http://arstechnica.com/science/news/201 ... -space.ars



Artificial life one day, teleportation the next... are we finally living in the future? Where's my jetpack and meal pills?

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Sun May 23, 2010 12:16 pm
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And people think it's a hassle when their bags get lost :lol: ;)

No, seriously, this is 8-)

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Sun May 23, 2010 12:54 pm
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This is a really exciting development.

Mark

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Sun May 23, 2010 3:40 pm
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:mrgreen:

I've been waiting for this for a while

Very cool

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Sun May 23, 2010 5:07 pm
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I honestly think it's being over-sold, and many people don't get just how restrictive the science is. Entanglement requires that both particles be processed at a single location prior to sending the particles to their final destination. That's almost completely unlike "teleportation" as we would want it for transportation.

The primary application of entanglement is for encrypted messaging. What makes it so useful for encryption is that there can be no undetected eves dropping, because as soon as one person observes the state of one particle it can not be un-seen.

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Sun May 23, 2010 5:23 pm
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It will make it easier to have ultra secure communication. Especially to ensure that the BPI are not watching my torrents. :D

For teleportation the computing power to transport people with trillions of atoms will still be beyond current technology for a while.

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Sun May 23, 2010 6:44 pm
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Amnesia10 wrote:
For teleportation the computing power to transport people with trillions of atoms will still be beyond current technology for a while.

I wouldn't worry about the computing power just yet.

We can't teleport a single atom. Not even a proton. Not a measly electron; they're talking about single photons which incidentally have zero rest mass. My rest mass is infinitely more than that...

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Sun May 23, 2010 8:47 pm
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