$10,000,000 Quantum Computer!

And to think that in 50 years that same computing power could possibly fit inside your bloodstream with nanobiotechnology.

An awesome read: http://en.wikipedia.org/wiki/Technological_singularity

Definitely an awesome read. I also recommend http://www.wired.com/wired/archive/8.04/joy_pr.html if you are into this type of stuff.

Doubt the singularity (in the short term) is anything else than mere fantasy though. As sad as it is. It will definitely happen, just not in Kurzweil's predicted time-frame...
 
They claim to have sold a 128 qubit computer. Now how many qubits are under control and for how long (usually, in a lab setting, close to none...) is a question left to be asked. However, assuming their claims are true and also assuming that a genreal quantum computing device will be produced (which this one isnt as it requires more qubits), the speed difference will be ridiculously hard to imagine. Lets just say that the strongest encryption algos (by far not the best example, as this doesn't really demonstrate true general quantum computing applications. Just a short hack so to say...), could be broken in mere seconds instead of years.

Of course there's a whole emerging field called "post-quantum" encryption coming up which doesn't strictly rely on factorization. Good times are ahead!

But it would just help an idea of how powerful it is, I mean if its equal to 1,000 of the titan supercomputers or 10,000 of them it would give a better idea of how powerful it is. What are they using as their basis as a convential computer.
 
Definitely an awesome read. I also recommend http://www.wired.com/wired/archive/8.04/joy_pr.html if you are into this type of stuff.

Doubt the singularity (in the short term) is anything else than mere fantasy though. As sad as it is. It will definitely happen, just not in Kurzweil's predicted time-frame...

I definitely agree the upward curve on his graph is too optimistic. The problem is that the people studying these things are mostly old academics who want to see it in their lifetime, some bias there.

But no doubt, unless zombie Jesus comes back with a game changer, it will happen.
 
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But it would just help an idea of how powerful it is, I mean if its equal to 1,000 of the titan supercomputers or 10,000 of them it would give a better idea of how powerful it is. What are they using as their basis as a convential computer.
Think of a qubit as an electron in a magnetic field. The electron's spin may be either in alignment with the field, which is known as a spin-up state, or opposite to the field, which is known as a spin-down state. Changing the electron's spin from one state to another is achieved by using a pulse of energy, such as from a laser - let's say that we use 1 unit of laser energy. But what if we only use half a unit of laser energy and completely isolate the particle from all external influences? According to quantum law, the particle then enters a superposition of states, in which it behaves as if it were in both states simultaneously. Each qubit utilized could take a superposition of both 0 and 1. Thus, the number of computations that a quantum computer could undertake is 2^n, where n is the number of qubits used. A quantum computer comprised of 500 qubits would have a potential to do 2^500 calculations in a single step. This is an awesome number - 2^500 is infinitely more atoms than there are in the known universe (this is true parallel processing - classical computers today, even so called parallel processors, still only truly do one thing at a time: there are just two or more of them doing it). But how will these particles interact with each other? They would do so via quantum entanglement.


Entanglement Particles (such as photons, electrons, or qubits) that have interacted at some point retain a type of connection and can be entangled with each other in pairs, in a process known as correlation . Knowing the spin state of one entangled particle - up or down - allows one to know that the spin of its mate is in the opposite direction. Even more amazing is the knowledge that, due to the phenomenon of superpostition, the measured particle has no single spin direction before being measured, but is simultaneously in both a spin-up and spin-down state. The spin state of the particle being measured is decided at the time of measurement and communicated to the correlated particle, which simultaneously assumes the opposite spin direction to that of the measured particle. This is a real phenomenon (Einstein called it "spooky action at a distance"), the mechanism of which cannot, as yet, be explained by any theory - it simply must be taken as given. Quantum entanglement allows qubits that are separated by incredible distances to interact with each other instantaneously (not limited to the speed of light). No matter how great the distance between the correlated particles, they will remain entangled as long as they are isolated.


Taken together, quantum superposition and entanglement create an enormously enhanced computing power. Where a 2-bit register in an ordinary computer can store only one of four binary configurations (00, 01, 10, or 11) at any given time, a 2-qubit register in a quantum computer can store all four numbers simultaneously, because each qubit represents two values. If more qubits are added, the increased capacity is expanded exponentially.
 
What would be the effect on medicine if this was used in protein folding?
 
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