Universal quantum computation using Ising anyons from a non-semisimple Topological Quantum Field Theory
POSTER
Abstract
We propose a framework for topological quantum computation using newly discovered nonsemisimple analogs of topological quantum field theories in 2+1 dimensions. These enhanced theories offer more powerful models for quantum computation: while the conventional theory of Ising anyons is not universal for quantum computation via braiding of quasiparticles, we show that the non-semisimple theory introduces new anyon types that extend the Ising framework. By adding just one new anyon type, universal quantum computation can be achieved through braiding alone.
Publication: https://arxiv.org/abs/2410.14860
Presenters
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Filippo Iulianelli
University of Southern California
Authors
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Filippo Iulianelli
University of Southern California
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Sung Kim
University of Southern California
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Joshua Sussan
City University of New York
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Aaron Lauda
University of Southern California