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author | Prefetch | 2023-01-01 16:40:56 +0100 |
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committer | Prefetch | 2023-01-01 17:02:29 +0100 |
commit | b1a9b1b9b2f04efd6dc39bd2a02c544d34d1259c (patch) | |
tree | 1fd87919deee17e58f8ad19c09abd54bd4a70886 /source/know/concept/shors-algorithm | |
parent | 1d700ab734aa9b6711eb31796beb25cb7659d8e0 (diff) |
Change license, add Makefile, add image caching control
Diffstat (limited to 'source/know/concept/shors-algorithm')
-rw-r--r-- | source/know/concept/shors-algorithm/index.md | 3 |
1 files changed, 2 insertions, 1 deletions
diff --git a/source/know/concept/shors-algorithm/index.md b/source/know/concept/shors-algorithm/index.md index 5ae5077..678d5d2 100644 --- a/source/know/concept/shors-algorithm/index.md +++ b/source/know/concept/shors-algorithm/index.md @@ -48,7 +48,8 @@ The period $$s$$ is the smallest integer satisfying $$f(x) = f(x+s)$$. To do this, the following $$2q$$-qubit quantum circuit is used, with $$q$$ chosen so that $$N^2 \le 2^q < 2 N^2$$: -{% include image.html file="shors-circuit.png" width="70%" alt="Shor's circuit" %} +{% include image.html file="shors-circuit.png" width="70%" + alt="Shor's circuit" %} Here, $$\mathrm{QFT}_q$$ refers to the $$q$$-qubit [quantum Fourier transform](/know/concept/quantum-fourier-transform/), |