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Fermionic entanglement via quantum walks in quantum dots

机译:通过量子流动的Fermionic纠缠在量子点

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Quantum walks are fundamentally different from random walks due to the quantum superposition property of quantum objects. Quantum walk process was found to be very useful for quantum information and quantum computation applications. In this paper we demonstrate how to use quantum walks as a tool to generate high-dimensional two-particle fermionic entanglement. The generated entanglement can survive longer in the presence of depolorazing noise due to the periodicity of quantum walk dynamics. The possibility to create two distinguishable qudits in a system of tunnel-coupled semiconductor quantum dots is discussed.
机译:由于量子物体的量子叠加特性,量子宽度与随机散步的根本不同。发现量子步行过程对量子信息和量子计算应用非常有用。在本文中,我们演示了如何使用量子作为一种工具来产生高维两粒颗粒的纠缠。由于量子行动动态的周期性,所产生的缠结可能在分馏噪声的情况下存活。讨论了在隧道耦合的半导体量子点系统中创建两个可区分QUDITS的可能性。

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