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<b>Tangle</b> is an open source library for simulating quantum circuits using state-of-the-art algorithms, and high performance computing techniques.
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<span class="text-center"><b>Launching Soon.</b></span>
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<a href="https://qcgpu.github.io/qcgpu/">Documentation</a>
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<b>Tangle</b> is an open source library for simulating quantum circuits using state-of-the-art algorithms, and high performance computing techniques.
is a library for simulating quantum circuits.
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<li>Simulation of arbitrary quantum circuits</li>
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<li>Example implementations of Grover, Deutsch-Jozsa, Bernstein-Vazirani and Shors algorithm</li>
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<pre><code class="python">###########################################
# Bernstein-Vazirani Algorithm
###########################################
import qcgpu
a = 101 # The hidden integer, bitstring is 1100101
register = qcgpu.State(16) # Create a new quantum register
register.apply_all(qcgpu.gate.h()) # Apply a hadamard gate to each qubit
# Apply the inner products oracle
for i in range(16):
if a & (1 << i) != 0:
register.z(i)
register.apply_all(qcgpu.gate.h()) # Apply a hadamard gate to each qubit
register.measure(samples=1000) # Measure the register (sample 1000 times)
</code></pre>
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