Researchers Succeed at Quantum Teleportation Breakthrough

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Bookshelf

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matrix3509 said:
Bookshelf said:
Hyperthetical said:
Daemascus said:
Couldnt this be used for faster than light comunications?
I must admit I have only passing acquaintance with Quantum Info theories (I attended a conference on it at the end of under-grad and it was a little over my head at that stage), but I don't think you can use it for FTL communication, it's only the 'resurrection' of the information that is instantaneous, not the full propagation.
Quantum Computing is something i'm terribly interested in, albeit quite a good bit over my head. I do believe that, since the two qbits are in an entangled state, it is not only FTL, but it is the instantaneous transmission of information.

From what I understand, when do things are entangled, they are bound by a fundamental property of the universe, the conservation of energy. The act of changing one of the spin states of one of the particles will instantaneously change the other. Einstein and some other people thought of it back in the 30s or 40s. It's famously called the "Spooky Action At A Distance."
I believe your confusion comes from what quantum telportation actually does. Quantum teleportation can only transmit quantum information (that is, an entangled quantum pair). It cannot be used to transmit classical information such as a voice or a text message.
Actually, I do believe it can/will be able to in the future, in a more of a round-a-bout sort of way.

Let's say that you and a buddy take a bunch of pairs of entangled particles. One of you gets on a spaceship and the other says here on Earth. Let's say he end up getting 10 or so lightyears away.

If the two people had already decided that spin 'down' would be a 0 and spin 'up' would be a 1, could the person on earth then change the spin state of one of his particles from 'down' to 'up,' and thus transmit a classical bit? Could that not be done enough time to transmit a message of some sort?
I quite away manually doing it would be quite impractical, but if it can be done, it can be done.
 

Bookshelf

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Hyperthetical said:
Bookshelf said:
Quantum Computing is something i'm terribly interested in, albeit quite a good bit over my head. I do believe that, since the two qbits are in an entangled state, it is not only FTL, but it is the instantaneous transmission of information.

From what I understand, when do things are entangled, they are bound by a fundamental property of the universe, the conservation of energy. The act of changing one of the spin states of one of the particles will instantaneously change the other. Einstein and some other people thought of it back in the 30s or 40s. It's famously called the "Spooky Action At A Distance."
Yes but you still have to send your friend half of an entangled state in order to perform the instant wave function collapse, making the communication as slow as the slowest part of this process.
Oh, of course, of course. Once they are, 'set up' you can begin to transfer information, bit by bit. Hopefully as time goes on entangled states and qbits will become more and more stable.

And yes, I am a physicist, been trying to keep my language as un-technical as possible for maximal explanatory clarity. (I only made a forum account to clear up a misconception about Mr Schrodinger's paradoxical feline in an earlier post).
I'm actually currently getting a minor in physics. Thinking about picking up a degree when i'm in grad school for computer science.
 

kane.malakos

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Abandon4093 said:
Basic electronic computers are supposed to slow down in advancement by about 2020 according to moores law.

And that's probably not a bad estimate.

We're already using wires an atom wide in some computers. How efficient can we keep making them?

Quantum computers could be the answer.
Yeah, we're already hitting walls in efficiency with circuits. There are several predictions about which paradigm we'll adopt next. Ray Kurzweil has been proposing 3-D nano-molecular circuits, but with all of these advances I think quantum computing will be practical fairly soon.
 

kane.malakos

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Abandon4093 said:
I've never heard of
3-D nano-molecular circuits
What's the basic idea behind that?

But yea, if they keep working on this, hopefully it'll be viable alternative to traditional electronic tech.

It would essentially be like re-designing the wheel. But it worked pretty well for Dunlop.
I don't really understand it fully, but I know some stuff about it. Basically, processors at the moment are 2-dimensional. By pushing into the third dimension, there are ways to allow shorter routes along the wires, which increases efficiency. They're also looking at stuff like programmable matter, where circuits can basically be "grown" inside of your computer. It's all pretty theoretical though, and like I said, we might just go with quantum computing instead.
 

matrix3509

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Abandon4093 said:
matrix3509 said:
Bookshelf said:
Hyperthetical said:
Daemascus said:
Couldnt this be used for faster than light comunications?
I must admit I have only passing acquaintance with Quantum Info theories (I attended a conference on it at the end of under-grad and it was a little over my head at that stage), but I don't think you can use it for FTL communication, it's only the 'resurrection' of the information that is instantaneous, not the full propagation.
Quantum Computing is something i'm terribly interested in, albeit quite a good bit over my head. I do believe that, since the two qbits are in an entangled state, it is not only FTL, but it is the instantaneous transmission of information.

From what I understand, when do things are entangled, they are bound by a fundamental property of the universe, the conservation of energy. The act of changing one of the spin states of one of the particles will instantaneously change the other. Einstein and some other people thought of it back in the 30s or 40s. It's famously called the "Spooky Action At A Distance."
I believe your confusion comes from what quantum telportation actually does. Quantum teleportation can only transmit quantum information (that is, an entangled quantum pair). It cannot be used to transmit classical information such as a voice or a text message.
Is the only discrepancy here what the information can be encoded to represent.

Surely with time, we could develop a way to make a certain pattern of 'entangled quantum pairs' represent something such as a voice to a specialized machine. Just like we managed to do for electricity?

I mean, isn't that a possibility?
I'm not super informed regarding all of the qualities of entanglement, but from what I know, you can't actually encode classical information into a quantum state. Part of the reason for this is that it is impossible to know the state of an entangled pair until it is measured. Measuring the entangled pair yourself defeats the purpose of the entanglement to begin with, as is trying to change its state after being measured. Suffice it to say that people much smarter than me have spent their entire lives studying quantum phenomena, and if that say that superluminal communication using entanglement is impossible, I'm inclined to trust them.
 

matrix3509

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Bookshelf said:
matrix3509 said:
Bookshelf said:
Hyperthetical said:
Daemascus said:
Couldnt this be used for faster than light comunications?
I must admit I have only passing acquaintance with Quantum Info theories (I attended a conference on it at the end of under-grad and it was a little over my head at that stage), but I don't think you can use it for FTL communication, it's only the 'resurrection' of the information that is instantaneous, not the full propagation.
Quantum Computing is something i'm terribly interested in, albeit quite a good bit over my head. I do believe that, since the two qbits are in an entangled state, it is not only FTL, but it is the instantaneous transmission of information.

From what I understand, when do things are entangled, they are bound by a fundamental property of the universe, the conservation of energy. The act of changing one of the spin states of one of the particles will instantaneously change the other. Einstein and some other people thought of it back in the 30s or 40s. It's famously called the "Spooky Action At A Distance."
I believe your confusion comes from what quantum telportation actually does. Quantum teleportation can only transmit quantum information (that is, an entangled quantum pair). It cannot be used to transmit classical information such as a voice or a text message.

If the two people had already decided that spin 'down' would be a 0 and spin 'up' would be a 1, could the person on earth then change the spin state of one of his particles from 'down' to 'up,' and thus transmit a classical bit? Could that not be done enough time to transmit a message of some sort?
I quite away manually doing it would be quite impractical, but if it can be done, it can be done.
The problem with your idea is that it is impossible to actually affect the state of a quantum pair before you measure it.
 

AgentNein

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bleachigo10 said:
They called it the "teleporter", how creative.
I'm sure once there's a marketing aspect in all of this it'll have a super fun, sexy yet inexplicable new name. The Quantum Leaper! Hmm, fun but needs more sexy. Gonna start working on the infomercial now.
 

Tulks

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samsonguy920 said:
Petabyte, anyone?
Isn't that a vegetarian restaurant?

OT: Good to see pure research still making headlines. I'm increasingly excited about a future I'll likely never see.
 

Lagslayer

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Apr 18, 2011
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I've been lurking around the site for a while and just registered to comment on this article.

If what it says is true, then they have not "teleported" anything. They have just sent information using light instead of electricity. It's a milestone, but not anything close to actual teleportation.
 

Dhatz

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lets not forget light processors will be here way before quantum computing. I imagine if they made quantum pair a reality, there could be lagness data transfer anywhere in space(but you must count with relativity of time between both ends of it), just like the hologram to Illusive man.

For superior data storage tehnology: racetrack memory.
 

ark123

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Feb 19, 2009
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Teleporting human beings is impossible. Here's how I figure that:
If you can separate every atom in a person, transport them somewhere, and reassemble them, there's no reason why you shouldn't be able to just take atoms out of nature and assemble them the same way. That means you'd be able to clone a person, but consider this: if you just clone yourself, clearly your consciousness isn't transferred.
So why would the use of your own atoms keep your consciousness? I mean clearly the resulting person would be identical to you, but you wouldn't be that person.

And yes, I'm aware this is convoluted and weird, but it does make sense.
 

Lagslayer

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Apr 18, 2011
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ark123 said:
Teleporting human beings is impossible. Here's how I figure that:
If you can separate every atom in a person, transport them somewhere, and reassemble them, there's no reason why you shouldn't be able to just take atoms out of nature and assemble them the same way. That means you'd be able to clone a person, but consider this: if you just clone yourself, clearly your consciousness isn't transferred.
So why would the use of your own atoms keep your consciousness? I mean clearly the resulting person would be identical to you, but you wouldn't be that person.

And yes, I'm aware this is convoluted and weird, but it does make sense.
Not impossible, that I can see. Physics says that a theoretical wave of pure energy passes through objects without interacting with them. I'm not saying "pure energy" is really possible(because that really is impossible), but if all of your particles could be evenly excited with energy and then all made to go in the same direction, your entire being could act as an energy wave, or at least become infinitely close without reaching a pure energy state. You could then be de-excited (or whatever the technical term is) at the other end. If done properly, this would preserve all electrical signals and matter as it would have normally been had you never been teleported in the first place. Alternately, the "read your data, break you down, and rebuild you at the other end" theory could be extended to reading your electric signals as well, preserving your brain data.