I cannot find the answer to this anywhere: what algorithms will we actually use the quantum computers for? Please skip Shor's algorithm, I understand this part. What else is there?
Hartree-Fock on a superconducting qubit quantum computer
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Re: Hartree-Fock on a superconducting qubit quantum computer
#12I cannot find the answer to this anywhere: what algorithms will we actually use the quantum computers for? Please skip Shor's algorithm, I understand this part. What else is there?
Hartree-Fock?
Re: Hartree-Fock on a superconducting qubit quantum computer
#13I cannot find the answer to this anywhere: what algorithms will we actually use the quantum computers for? Please skip Shor's algorithm, I understand this part. What else is there?
I get the impression no-one really knows because the potential capabilities and engineering realities knock up against the limits of what we understand. They are experimental machines that work in a way we barely understand. So maybe something really revolutionary, or maybe just more efficient Netflix recommendations.
Re: Hartree-Fock on a superconducting qubit quantum computer
#14I cannot find the answer to this anywhere: what algorithms will we actually use the quantum computers for? Please skip Shor's algorithm, I understand this part. What else is there?
I am far from an expert, but as I understand it, Shor's factorization algorithm is a gateway to lots of fast crypto, so it's "enabling technology" for a lot of crypto and number-theoretic applications, not an end-point. There is also Grover's search algorithm, which can retrieve items from an N-element list with fewer than N operations. In the quantum chemistry world, there is work underway to build QC circuits that…
> What Von Nuemann algorithm can I put on this?
I am very far from asking this question, thinking about the memory architecture is far too detailed here :). If anything it's about P vs BQP. Or probably even more so about heuristics and approximate algorithms, as in practice that's what is used for hard problems.
Re: Hartree-Fock on a superconducting qubit quantum computer
#15I cannot find the answer to this anywhere: what algorithms will we actually use the quantum computers for? Please skip Shor's algorithm, I understand this part. What else is there?
Re: Hartree-Fock on a superconducting qubit quantum computer
#16Earlier quoted context omitted.
I am far from an expert, but as I understand it, Shor's factorization algorithm is a gateway to lots of fast crypto, so it's "enabling technology" for a lot of crypto and number-theoretic applications, not an end-point. There is also Grover's search algorithm, which can retrieve items from an N-element list with fewer than N operations. In the quantum chemistry world, there is work underway to build QC circuits that…
Thanks for the link, it does seem interesting. > What Von Nuemann algorithm can I put on this? I am very far from asking this question, thinking about the memory architecture is far too detailed here :). If anything it's about P vs BQP. Or probably even more so about heuristics and approximate algorithms, as in practice that's what is used for hard problems.
Re: Hartree-Fock on a superconducting qubit quantum computer
#17When will the B3LYP paper come out?
The promise of QC is that post-HF methods become cheap enough that you won't need DFT
Re: Hartree-Fock on a superconducting qubit quantum computer
#18Re: Hartree-Fock on a superconducting qubit quantum computer
#19Earlier quoted context omitted.
Thanks for the link, it does seem interesting. > What Von Nuemann algorithm can I put on this? I am very far from asking this question, thinking about the memory architecture is far too detailed here :). If anything it's about P vs BQP. Or probably even more so about heuristics and approximate algorithms, as in practice that's what is used for hard problems.
Does quantum do a different memory arch?
Re: Hartree-Fock on a superconducting qubit quantum computer
#20Earlier quoted context omitted.
Thanks for the link, it does seem interesting. > What Von Nuemann algorithm can I put on this? I am very far from asking this question, thinking about the memory architecture is far too detailed here :). If anything it's about P vs BQP. Or probably even more so about heuristics and approximate algorithms, as in practice that's what is used for hard problems.
Does quantum do a different memory arch?