Hey, Scott! Love your book, Quantum Computing Since Democritus. There is one section which confused me, in the Quantum chapter ( https://www.scottaaronson.com/democritus/lec9.html ). I have two questions: 1) You say applying the unitary operation is the quantum analogue of "taking a coin and flipping it" - what do you mean by this? Could we think of, for example, a pair of slits as applying this transformation on a p…
1) Yes, a unitary transformation like the Hadamard gate maps the state |0> to |0>+|1>, while mapping |1> to |0>-|1>. In either case, if you then just measured immediately in the {|0>,|1>} basis without doing anything else, you'd see |0> or |1> with equal probabilities, so it would have the effect of a coin flip. But of course, in other cases---e.g., if you measured in a different basis, or if you applied the Hadamard…
I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
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Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#302Earlier quoted context omitted.
A quantum computer is a device that exploits constructive and destructive interference among exponentially many amplitudes , which are numbers that are closely related to probabilities but can be positive, negative, or even complex. If you feel that sentence wasn't clear enough, and it would take at least a few more paragraphs to flesh it out ... well, duh, what did you expect? :-D For a SLIGHTLY longer account, see…
Here's my attempt at a two sentence over-over-over simplification that at least gets people away from the "magic bit-sting that contains your answer." (It also harkens back to an old Einstein quote, so may be attractive to science writers.) Quantum computing is a technique that lets you sample a problem's answer-space using "loaded dice," such that the problem's correct answers correspond with probability spikes in y…
Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#303Hi! So, what do you do when you're not flipping qubits around? Got any cool stories you wanna share?
When I'm not flipping qubits around, I eat, sleep, blog, answer emails, play with my two kids, get depressed reading the news about US politics, and then get even more depressed reading people saying mean things about me and my nerdy friends on Twitter and Reddit.
(I don't really have much to ask you since anything I could comprehend is easily googlable and I don't wanna waste ur time. Just wanna say keep up the good work and thanks!)
Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#304Do you think it's a good idea that all the teams working on quantum computing have put their money on the surface code? What are your thoughts? Do you believe that we are putting all our eggs in one basket?
Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#305Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#306Scott, Do you think it's a good idea that all the teams working on quantum computing have put their money on the surface code? What are your thoughts? Do you believe that we are putting all our eggs in one basket?
Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#307Earlier quoted context omitted.
You should probably wait for an AMA with someone who's actually an expert in AI, and ask them this question. Since you asked me, though, I did a quick Google search and found the following paper: https://arxiv.org/pdf/1711.09667.pdf where indeed they use machine learning to induce the rules of chess from a large number of played games (and then learn to play better than any human). It doesn't surprise me at all that…
>> where indeed they use machine learning to induce the rules of chess from a large number of played games (and then learn to play better than any human). They didn't induce the rules of chess! What they did was learn an evaluation function for chess moves, from scratch, i.e. without giving it the rules or any hand-crafted features. So they learned a classifier for good/bad board states, which was later used in an al…
Since you obviously know this subject, what are the best current results in the direction of inducing the rules of chess from played games?
Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#308Hi Scott 1. What do you think is the potential for emergence of a third computing model, apart from classical and quantum, which is sufficiently different in its fundamental computing paradigm from these? Do you believe biological substrates offer opportunity for computing which classical/QC cannot replicate? 2. If we achieve quantum supremacy, who do you think will be the biggest winners and losers, in terms of prof…
2. Yes, if quantum computing is successful, I imagine that might be good for the careers of many of the people involved in quantum computing.
3. Regarding D-Wave, there's this weird tendency to get fixated on words and definitions (but is it "really" QC or "really" analog?) even after you've explained the reality of the situation. See https://news.ycombinator.com/item?id=17426023 for my current summary.
Again, I'm skeptical that analog computers will ever be able to solve any problems outside BPP---for that I think you need a QC. (I.e., if not for quantum mechanics, I would have believed in the Extended Church-Turing Thesis. :-) ) Whether analog computers will ever again compete with digital ones on the constant factors, leaving aside the asymptotics, for problems that people actually care about, is a harder and more complicated question to which I don't know the answer.
Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#309Earlier quoted context omitted.
A quantum computer is a device that exploits constructive and destructive interference among exponentially many amplitudes , which are numbers that are closely related to probabilities but can be positive, negative, or even complex. If you feel that sentence wasn't clear enough, and it would take at least a few more paragraphs to flesh it out ... well, duh, what did you expect? :-D For a SLIGHTLY longer account, see…
Here's my attempt at a two sentence over-over-over simplification that at least gets people away from the "magic bit-sting that contains your answer." (It also harkens back to an old Einstein quote, so may be attractive to science writers.) Quantum computing is a technique that lets you sample a problem's answer-space using "loaded dice," such that the problem's correct answers correspond with probability spikes in y…
Re: I'm Scott Aaronson, quantum computing/computational complexity researcher. AMA
#310Earlier quoted context omitted.
That word 'testable', is very loaded. :) But I get what you mean. Are there things that we can't test that do exist?
>Are there things that we can't test that do exist? There's many reasons to believe that objects that exit our light cone continue to exist after they do, even though they could never have any future interaction with us to confirm that. (Say a spaceship leaves Earth at near the speed of light in a straight line, and then enough time passes that the space between the ship and Earth is expanding so fast that the spaces…