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Optimal diabatic dynamics of Majorana-based quantum gates

机译:基于Majorana的量子门的最佳尿布动力学

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摘要

In topological quantum computing, unitary operations on qubits are performed by adiabatic braiding of non-Abelian quasiparticles, such as Majorana zero modes, and are protected from local environmental perturbations. In the adiabatic regime, with timescales set by the inverse gap of the system, the errors can be made arbitrarily small by performing the process more slowly. To enhance the performance of quantum information processing with Majorana zero modes, we apply the theory of optimal control to the diabatic dynamics of Majorana-based qubits. While we sacrifice complete topological protection, we impose constraints on the optimal protocol to take advantage of the nonlocal nature of topological information and increase the robustness of our gates. By using the Pontryagin's maximum principle, we show that robust equivalent gates to perfect adiabatic braiding can be implemented in finite times through optimal pulses. In our implementation, modifications to the device Hamiltonian are avoided. Focusing on thermally isolated systems, we study the effects of calibration errors and external white and 1/f (pink) noise on Majorana-based gates. While a noise-induced antiadiabatic behavior, where a slower process creates more diabatic excitations, prohibits indefinite enhancement of the robustness of the adiabatic scheme, our fast optimal protocols exhibit remarkable stability to noise and have the potential to significantly enhance the practical performance of Majorana-based information processing.
机译:在拓扑量子计算中,Qubits上的单一操作是通过非雅典Quasiply的绝热编织来执行,例如Majorana Zero模式,并且受到局部环境扰动的保护。在绝热制度中,通过由系统的逆差间隙设定的时间尺寸,通过更慢地执行该过程,可以任意地进行误差。为了提高与Majorana零模式的量子信息处理的性能,我们将最佳控制理论应用于Majorana的Qubits的酸性动态。虽然我们牺牲了完整的拓扑保护,但我们对最佳方案施加了限制,以利用拓扑信息的非局部性质,并增加我们门的鲁棒性。通过使用Pontryagin的最大原理,我们表明,通过最佳脉冲可以在有限时间内实现完美的绝热编织的强大等效栅极。在我们的实施中,避免了对设备哈密顿时的修改。专注于热隔离的系统,我们研究了校准误差和外白色和1 / F(粉红色)噪声对基于Majorana的栅极的影响。虽然噪音引起的antiadiabatic行为,其中一个较慢的过程创造了更多的绝热激励,禁止绝热方案的鲁棒性的不确定增强,我们的速度快,优化方案表现出卓越的稳定性,噪音,有显著提升Majorana-的实用性能的潜力基于信息处理。

著录项

  • 来源
    《Physical review, B》 |2017年第7期|共8页
  • 作者单位

    Western Washington Univ Dept Phys &

    Astron Bellingham WA 98225 USA;

    Indiana Univ Dept Phys Bloomington IN 47405 USA;

    Univ British Columbia Dept Phys &

    Astron Vancouver BC V6T 1Z4 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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