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首页> 外文期刊>Advances in Natural Sciences: Nanoscience and Nanotechnology >Flexible controlled joint remote preparation of an arbitrary two-qubit state via non-maximally entangled quantum channels - IOPscience
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Flexible controlled joint remote preparation of an arbitrary two-qubit state via non-maximally entangled quantum channels - IOPscience

机译:通过非最大纠缠量子通道进行任意二量子位态的柔性受控联合远程制备-IOPscience

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Transferring a quantum state from one location to another without physically sending the state itself through open space is a special global task that can only be carried out thanks to the laws of nature, namely the principles of quantum mechanics. In this work, we devise protocols for two senders to jointly prepare the most general two-qubit state for a receiver under the supervision of a controller by using three different types of quantum channels, all of which are non-maximally entangled. First, we propose the schemes to produce the quantum channels concerned, and then we present the concrete steps required to execute the protocols, highlighting the issue of why shared non-maximal entanglement is intentionally used instead of maximal entanglement.
机译:将量子态从一个位置转移到另一位置而不将其本身通过开放空间进行物理传输是一项特殊的全球任务,这只能依靠自然法则即量子力学原理来完成。在这项工作中,我们设计了两个发送方的协议,以通过使用三种不同类型的量子通道在控制器的监督下,共同为接收方准备最通用的两比特状态,所有这些量子通道都没有最大程度地纠缠。首先,我们提出了产生相关量子通道的方案,然后我们提出了执行协议所需的具体步骤,突出了为什么有意使用共享的非最大纠缠而不是最大纠缠的问题。

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