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December 19, 2007Physical Review Letters272 citationsOpen Access

Demonstration of a Compiled Version of Shor’s Quantum Factoring Algorithm Using Photonic Qubits

CLChao‐Yang LuDBDan E. BrowneTYTao Yang

Key Points

  • To experimentally realize a compiled version of Shor's quantum factoring algorithm on a photonic qubit platform to factor the integer 15.
  • Constructed a simplified linear optical network operating on four photonic qubits.
  • Coherently implemented quantum circuits for modular exponentiation with period r=2 and a semiclassical quantum Fourier transformation.
  • Successfully performed quantum factorization of the integer N=15 using the compiled four-qubit optical setup.
  • Observed genuine multiparticle entanglement during computation, verifying the quantum mechanical operation of the system.

Abstract

We report an experimental demonstration of a complied version of Shor's algorithm using four photonic qubits. We choose the simplest instance of this algorithm, that is, factorization of N=15 in the case that the period r=2 and exploit a simplified linear optical network to coherently implement the quantum circuits of the modular exponential execution and semiclassical quantum Fourier transformation. During this computation, genuine multiparticle entanglement is observed which well supports its quantum nature. This experiment represents an essential step toward full realization of Shor's algorithm and scalable linear optics quantum computation.

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Cite This Study

Lu et al. (2007) studied this question.

synapsesocial.com/papers/6a10370e64e8141cd2601cf8https://doi.org/10.1103/physrevlett.99.250504
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