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Towards a universal set of topologically protected gates for quantum computation with Pfaffian qubits

机译:迈向普法夫量子位量子计算的通用拓扑保护门集

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摘要

We review the topological quantum computation scheme of Das Sarma et al. from the perspective of the conformal field theory for the two-dimensional critical Ising model. This scheme originally used the monodromy properties of the non-Abelian excitations in the Pfaffian quantum Hall state to construct elementary qubits and execute logical NOT on them. We extend the scheme of Das Sarma et al. by exploiting the explicit braiding transformations for the Pfaffian wave functions containing 4 and 6 quasiholes to implement, for the first time in this context, the single-qubit Hadamard and phase gates and the two-qubit Controlled-NOT gate over Pfaffian qubits in a topologically protected way. In more detail, we explicitly construct the unitary representations of the braid groups B-4, B-6 and B-8 and use the elementary braid matrices to implement one-, two- and three-qubit gates. We also propose to construct a topologically protected Toffoli gate, in terms of a braid-group based Controlled-Controlled-Z gate precursor. Finally we discuss some difficulties arising in the embedding of the Clifford gates and address several important questions about topological quantum computation in general. (c) 2007 Elsevier B.V. All rights reserved.
机译:我们回顾了Das Sarma等人的拓扑量子计算方案。从二维临界Ising模型的共形场理论的角度出发。该方案最初使用Pfaffian量子霍尔态中非阿贝尔激发的单峰性质来构造基本量子位并对其执行逻辑非。我们扩展了Das Sarma等人的方案。通过对包含4个和6个拟孔的Pfaffian波函数进行显式编织变换,在这种情况下,首次在拓扑上实现Pfaffian量子位上的单量子位Hadamard和相门以及两量子位可控NOT门保护的方式。更详细地,我们显式构造编织组B-4,B-6和B-8的unit表示,并使用基本编织矩阵实现一,二和三量子位门。我们还建议根据基于编织组的受控-受控-Z栅极前驱体构建拓扑受保护的Toffoli栅极。最后,我们讨论了嵌入Clifford门时出现的一些困难,并讨论了有关拓扑量子计算的几个重要问题。 (c)2007 Elsevier B.V.保留所有权利。

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