The last time I checked (which was a few years ago), it was much faster to simulate magnetic annealing on classical machines than to use the D-Wave --- and this is precisely what D-Wave is designed to do. I wonder whether this has changed? It is hard to quickly check this now amidst the large amount of articles decrying D-Wave for calling themselves a quantum computer.
Towards the end of this article it is noted that several "classical" machine algorithms were also used and these produced essentially the same results.
I think the question of whether one could somehow perform better or faster machine learning, or to write a 'quantum evolutionary algorithm' that perhaps converges to something better faster, is an interesting question. I haven't thought about this before.
[1]: https://www.scottaaronson.com/blog/?p=1400 [2]: https://venturebeat.com/2013/12/27/d-wave-a-multimillion-dol... [3]: http://physicsworld.com/cws/article/news/2014/jun/20/is-d-wa... [4]: https://arstechnica.com/science/2016/02/is-d-waves-quantum-p... [5]: https://www.wired.com/2014/05/quantum-computing/ [6]: https://www.nature.com/nature/journal/v550/n7676/full/nature...
> The last time I checked (which was a few years ago)
A lot has changed.
I think it is perfectly reasonable to say it is not a quantum computer, in the same way that not everything performing computation is called a computer. Otherwise---taken to the absurd---why not call a chemist's beaker a quantum computer?
I'm not saying you're wrong- it's often mislabeled as a quantum computer- but it isn't fair to say it's no better than a chemist's beaker.
Is instruction pipelining a form of multiprocessing? (No.) Is hyperthreading? (Sort of, but it's limited and has a separate name for a reason.) Are hyperthreads marketed as SMP cores? (Of course.)
Is a chemist's beaker a quantum computer? (No.) Is D-Wave's device? (Sort of, but it's limited and should have a separate name.) Is D-Wave's device marketed as a quantum computer? (Of course.)
The whole point of a "quantum computer" is getting those nonlinear speedups. If the entanglement doesn't speed anything up then it's pretty close to the beaker in terms of relevance.
Well, I mean, I think it's more like "we're well aware of quantum effects and they're parasitic". I've yet to see a production TFET or something like that which actually uses a quantum phenomenon as the operating principle of the switch.
A) Uses quantum effects like superposition and entanglement to compute, no quantum speedup.
B) Uses quantum effects to compute, with quantum speedup.
C) Universal quantum computer with quantum speedup.
I would argue that the term "quantum computer", as commonly used, requires the device to be at least class B on this list. Even if you don't think class C is necessary, class A is full of trash like "knockoff 6502 with a fancy photon-splitting ALU". Class A allows the quantum nature to be a pointless novelty resource. It's like a "solar-powered" house with one square foot of panels.
And as far as I know D-Wave haven't conclusively proven their device to be class B.
"The D-Wave system uses quantum annealing, which utilizes quantum effects to solve a select few problems much faster than traditional computers. However, it's not as flexible as a universal quantum computer, which could solve a much wider range of problems, including the prime-factorization problem at the heart of modern cryptography."
He was referring to D-Wave not being competitive with conventional systems.
When did it become generally accepted that D-Wave has shown it could do anything useful significantly faster than a regular computer?
Last I heard it was only coming close on 1 or 2 things, but still with no convincing advantage let alone a dramatic one,
Could you please give some examples?
Tip for quickly getting past all the irrelevant results in Google when you're searching for something specific: click the 10th page of results and start from there.
You'll trigger their bot check more often because it's unusual to them that you actually want to know about the specific thing you're looking up instead of seeing 100 identical blog posts/news articles on the subject.
D-Wave has/had several co-founders. One has left to start Kindred.