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Universal Quantum Logic Gates Based on Phase Control

机译:基于相位控制的通用量子逻辑门

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Based on the semi-classical theory of the interaction between light and matter, we propose an effective scheme for describing the realization of single quantum gates. The rigorous analytical solution for the resonant system, in which the double ultra-short powerful laser pulses with accurately controllable relative phase difference will interact with the atoms, is obtained by solving the time-dependent Schr?dinger equation. According to the corresponding solution, we deduce the systematic matrix expression of unitary transformation. Universal quantum logic gates are all implemented theoretically by means of regulating properly the laser pulses' intensity and its relative phase difference as well as the optic detuning. This method also proves practical in terms of its comparably easier manipulation.
机译:基于光和物质之间相互作用的半古典理论,提出了一种用于描述单量子门的实现的有效方案。通过求解时间依赖性的Schr?Dinger方程,获得具有精确可控相位差的双超短强力激光脉冲的谐振系统的严格分析解决方案,其中,通过求解时间依赖性Schr?Dinger方程来实现。根据相应的解决方案,我们推导了单一转化的系统基质表达。通过适当地调节激光脉冲强度及其相对相位差以及光学静脉,本体地实现了通用量子逻辑门。这种方法还证明了其相对容易的操作方面的实用性。

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