一个计划为经由远距传物包含可编程的量逻辑门被建议,它是在量力学的一种唯一的技术。在我们的计划,就吵闹的环境引起的不可避免的 decoherence 而言,量状态最大地没被纠缠。我们显示出单个 qubit 量门的实现并且控制 -- 不(CNOT ) 门,它是通用的量门。因此,任何量门能被与 non-maximally 纠缠的状态使用远距传物实现。而且,在通用的门的 differet 连接的二个计划被建议并且比较,并且我们的结果证明平行连接超过串联连接。
A scheme is proposed for involving programmable quantum logic gates via teleportation, which is a unique technique in quantum mechanics. In our scheme, considering the inevitable decoherence caused by noisy environment, the quantum states are not maximally entangled. We show the implementation of single qubit quantum gates and controlled-NOT (C- NOT) gate, which are universal quantum gates. Hence, any quantum gate can be implemented by using teleportation with non-maximally entangled states. Furthermore, two schemes in differet connections of universal gates are proposed and compared, and our results show the parallel connection outperforms the cascade connection.