Topological quantum error correction in fractal dimensions II: decoding and threshold estimation
ORAL
Abstract
We investigate quantum error correction with topological codes on 3D fractal lattices with Hausdorff dimension 3-δ. We show concrete decoding schemes for correcting the bit-flip and phase errors. For the phase errors, we have developed both a minimum-weight-perfect-matching decoder and a cluster decoder on the 3D fractal lattice. For the bit-flip errors, we have developed a particular type of local cellular-automaton decoder, the sweep decoder, for the 3D fractal code. We also show that bit-flip errors can be corrected in a single shot. For all these decoders, we have numerically estimated the corresponding error threshold using Monte Carlo simulations.
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Presenters
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Arpit Dua
California Institute of Technology, IBM Quantum, T.J. Watson Research Center and California Institute of Technology
Authors
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Arpit Dua
California Institute of Technology, IBM Quantum, T.J. Watson Research Center and California Institute of Technology
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Guanyu Zhu
IBM TJ Watson Research Center, IBM Quantum, IBM Quantum, T.J. Watson Research Center, IBM Quantum, T.J. Watson Research Center and Almaden Research Center
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Tomas Jochym-O'Connor
IBM Quantum, T.J. Watson Research Center, IBM Quantum, T. J. Watson Research Center