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Two-Particle Wave Function of Electrons Coherently Propagating along Quantum Wires

机译:电子沿量子线相干传播的两波函数

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摘要

A two-qubit system made of electrons running along coupled pairs of quantum wires is described and numerically analyzed. A brief review of the basic gates is given first, based on preliminary investigations, followed by the description of the electron dynamics. A detailed analysis of a conditional phase shifter is carried out by means of a time-dependent Schroedinger solver applied to a two-particle system. A quantum network suitable for creating entanglement is simulated, and results are shown. The physical structure of the proposed network is within the reach of a solid-state implementation. The physical parameters used in the computations have been chosen with reference to silicon quantum wires embedded in silicon dioxide.
机译:描述并数值分析了由电子组成的双量子系统,该系统沿着耦合的量子线对运行。首先,在初步研究的基础上,对基本门进行了简要回顾,然后介绍了电子动力学。对条件移相器的详细分析是通过将时间依赖的Schroedinger求解器应用于两粒子系统来进行的。模拟了一个适合产生纠缠的量子网络,并显示了结果。所提议的网络的物理结构在固态实现的范围之内。已经参考嵌入二氧化硅中的硅量子线选择了计算中使用的物理参数。

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