What are they doing about error correction? Not that it makes this any less impressive (everything starts somewhere ), are they simply ignoring the problem?
IBM Q system in development with working 50 qubit processor
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Re: IBM Q system in development with working 50 qubit processor
#32Earlier quoted context omitted.
Quantum computers don't break all encryption. There's no risk of that, fortunately.
Please expand on that. What encryption is vulnerable and what isn't?
All currently popular forms of asymmetric / public key encryption (including RSA and ECC) are vulnerable to quantum attack.
Re: IBM Q system in development with working 50 qubit processor
#33Earlier quoted context omitted.
What stands out to you in the last 20 years?
IBM has been awarded more patents per year than any other company for the last 24 years[1]. In 2016 alone, IBM published ~22 patents per day, and ended up being ~2500 patents ahead of Samsung (#2). [1]: http://www-03.ibm.com/press/us/en/pressrelease/51353.wss
Re: IBM Q system in development with working 50 qubit processor
#34At what point do we no longer trust public key cryptography (RSA)? Where's the break point?
> It is estimated that 2048-bit RSA keys could be broken on a quantum computer comprising 4,000 qubits and 100 million gates. Experts speculate that quantum computers of this size may be available within the next 20-30 years. https://www.entrust.com/wp-content/uploads/2013/05/WP_Quantu... The paper is from 2009, so ~2030 to break 2048-bit RSA seems about right. If they can double the number of qubits every two years,…
1 - https://en.wikipedia.org/wiki/Timeline_of_quantum_computing
Re: IBM Q system in development with working 50 qubit processor
#35What are they doing about error correction? Not that it makes this any less impressive (everything starts somewhere ), are they simply ignoring the problem?
Re: IBM Q system in development with working 50 qubit processor
#36At what point do we no longer trust public key cryptography (RSA)? Where's the break point?
> It is estimated that 2048-bit RSA keys could be broken on a quantum computer comprising 4,000 qubits and 100 million gates. Experts speculate that quantum computers of this size may be available within the next 20-30 years. https://www.entrust.com/wp-content/uploads/2013/05/WP_Quantu... The paper is from 2009, so ~2030 to break 2048-bit RSA seems about right. If they can double the number of qubits every two years,…
isn't that what PFS is supposed to prevent?
Re: IBM Q system in development with working 50 qubit processor
#37Earlier quoted context omitted.
If I remember correctly, it takes a quantum computer with roughly 2N qubits to break N-bit RSA. So we should be ok until thousand-qubit systems are being developed. Increasing key lengths is a short-term workaround, but the real solution is post-quantum public key encryption, which is currently an area of active research.
Do you know what the implications are for symmetric ciphers or [elliptic curve] Diffie-Hellman key exchange? I.e. will forward secrecy still hold up against such future quantum computing?
Re: IBM Q system in development with working 50 qubit processor
#38What are they doing about error correction? Not that it makes this any less impressive (everything starts somewhere ), are they simply ignoring the problem?
https://www.research.ibm.com/ibm-q/resources/quantum-volume....
Re: IBM Q system in development with working 50 qubit processor
#39Earlier quoted context omitted.
> It is estimated that 2048-bit RSA keys could be broken on a quantum computer comprising 4,000 qubits and 100 million gates. Experts speculate that quantum computers of this size may be available within the next 20-30 years. https://www.entrust.com/wp-content/uploads/2013/05/WP_Quantu... The paper is from 2009, so ~2030 to break 2048-bit RSA seems about right. If they can double the number of qubits every two years,…
>Also, you have to consider that once you get a quantum computer that can break 2048-RSA, you'll be able to break all the encrypted communications you've stored in the past few years, too isn't that what PFS is supposed to prevent?
Also, PFS uses 256-bit ECC, which only requires a 512-qubit quantum computer to break it. So it's possible that a 4,000 qubit quantum computer, or even a smaller one, could break ECC with PFS even faster than it can break 2048-bit RSA.
Re: IBM Q system in development with working 50 qubit processor
#40I look forward to supercool (no pun intended) qSeries mainframes and whatever wild OSs they'll run. Right now, it looks like it's a batch processing like thing, with a single problem using the machine at any given time with long setup/teardown times.