通过矢量孤子的碰撞模拟量子逻辑

A. Janutka
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引用次数: 10

摘要

多分量矢量孤子(Manakov型)的极化可以被认为是量子比特系统(量子信息的寄存器)的状态向量。根据需要,通过将寄存器脉冲与其他孤子碰撞来改变这种状态,可以实现任意精度。得到了与量子门计算通用集相对应的寄存器开关孤子的参数(偏振、脉宽、速度)。利用光学介质的自聚焦效应或自诱导透明效应的信息处理的物理实现被考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of quantum logic via collisions of vector solitons
The polarization of a multi-component vector soliton (of the Manakov type) can be thought of as a state vector of a system of qubits (a register of quantum information). A change of this state on demand via colliding the register pulse with other solitons is shown to be possible with arbitrary accuracy. The parameters (polarization, pulse width, velocity) of the register-switching solitons corresponding to the computationally universal set of quantum gates are found. Physical realizations of information processing using effects of the self-focusing of optical media or of the self-induced transparency are considered.
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