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pr-2570/applications/python/deutschs_algorithm.html

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@@ -822,7 +822,7 @@ <h2>XOR <span class="math notranslate nohighlight">\(\oplus\)</span><a class="he
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</section>
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<section id="Quantum-oracles">
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<h2>Quantum oracles<a class="headerlink" href="#Quantum-oracles" title="Permalink to this heading"></a></h2>
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<p><img alt="0848aa8474a643a6b88802b01ff0f881" class="no-scaled-link" src="../../_images/oracle.png" style="width: 300px; height: 150px;" /></p>
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<p><img alt="0cccfc02375c4b7a95ac06a1d05f724f" class="no-scaled-link" src="../../_images/oracle.png" style="width: 300px; height: 150px;" /></p>
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<p>Suppose we have <span class="math notranslate nohighlight">\(f(x): \{0,1\} \longrightarrow \{0,1\}\)</span>. We can compute this function on a quantum computer using oracles which we treat as black box functions that yield the output with an appropriate sequence of logical gates.</p>
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<p>Above you see an oracle represented as <span class="math notranslate nohighlight">\(U_f\)</span> which allows us to transform the state <span class="math notranslate nohighlight">\(\ket{x}\ket{y}\)</span> into:</p>
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<div class="math notranslate nohighlight">
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<h2>Deutsch’s Algorithm:<a class="headerlink" href="#Deutsch's-Algorithm:" title="Permalink to this heading"></a></h2>
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<p>Our aim is to find out if <span class="math notranslate nohighlight">\(f: \{0,1\} \longrightarrow \{0,1\}\)</span> is a constant or a balanced function? If constant, <span class="math notranslate nohighlight">\(f(0) = f(1)\)</span>, and if balanced, <span class="math notranslate nohighlight">\(f(0) \neq f(1)\)</span>.</p>
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<p>We step through the circuit diagram below and follow the math after the application of each gate.</p>
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<p><img alt="f908da61c4db49518aac97b7f24a4f23" class="no-scaled-link" src="../../_images/deutsch.png" style="width: 500px; height: 210px;" /></p>
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<p><img alt="8c8af55116154674a9ad494efaa922b2" class="no-scaled-link" src="../../_images/deutsch.png" style="width: 500px; height: 210px;" /></p>
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<div class="math notranslate nohighlight">
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\[\ket{\psi_0} = \ket{01}
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\tag{1}\]</div>

pr-2570/examples/python/executing_photonic_kernels.html

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</div>
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<div class="output_area docutils container">
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<div class="highlight"><pre>
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{ 02:381 11:253 20:366 }
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{ 02:371 11:247 20:382 }
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<div class="output_area docutils container">
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<div class="highlight"><pre>
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CUDA-Q Version (https://github.com/NVIDIA/cuda-quantum 65c8e17100a5273c468dab65b7196ffd0f3ca8d5)
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CUDA-Q Version (https://github.com/NVIDIA/cuda-quantum aca2f5e351c412ee13c99d23ddf7bc51cf3044c3)
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</pre></div></div>
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</section>

pr-2570/examples/python/executing_photonic_kernels.ipynb

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"\n"
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"execution": {
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"CUDA-Q Version (https://github.com/NVIDIA/cuda-quantum 65c8e17100a5273c468dab65b7196ffd0f3ca8d5)\n"
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"CUDA-Q Version (https://github.com/NVIDIA/cuda-quantum aca2f5e351c412ee13c99d23ddf7bc51cf3044c3)\n"
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pr-2570/examples/python/performance_optimizations.html

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<section id="Gate-Fusion">
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<h2>Gate Fusion<a class="headerlink" href="#Gate-Fusion" title="Permalink to this heading"></a></h2>
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<p>Gate fusion is an optimization technique where consecutive gates are combined into a single gate operation to improve the efficiency of the simulation (See figure below). By targeting the <code class="docutils literal notranslate"><span class="pre">nvidia-mgpu</span></code> backend and setting the <code class="docutils literal notranslate"><span class="pre">CUDAQ_MGPU_FUSE</span></code> environment variable, you can select the degree of fusion that takes place. A full command line example would look like <code class="docutils literal notranslate"><span class="pre">CUDAQ_MGPU_FUSE=4</span> <span class="pre">python</span> <span class="pre">c2h2VQE.py</span> <span class="pre">--target</span> <span class="pre">nvidia</span> <span class="pre">--target-option</span> <span class="pre">fp64,mgpu</span></code></p>
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<p><img alt="85c9dee8614047079035f65b0489e94f" src="../../_images/gate-fuse.png" /></p>
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<p><img alt="e939025fdb3848ddbb4557fa62eba868" src="../../_images/gate-fuse.png" /></p>
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<p>The importance of gate fusion is system dependent, but can have a large influence on the performance of the simulation. See the example below for a 24 qubit VQE experiment where changing the fusion level resulted in significant performance boosts.</p>
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<p><img alt="fdb6181b44de4a60bcbb9f8109a6792c" src="../../_images/gatefusion.png" /></p>
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<p><img alt="ed2368be79ae4c5591f3e76bffcac757" src="../../_images/gatefusion.png" /></p>
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</section>
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pr-2570/searchindex.js

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