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Optimization of Remote One- and Two-Qubit State Creation by Unitary Transformations of A Sender and An Extended Receiver

机译:通过统一转换和扩展接收器的酉变换来优化远程单态和双疑问状态创建

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We study the optimization problem for remote one- and two-qubit state creation via a homogeneous communication line of spin-1/2 particles using local unitary transformations of the multiqubit sender and extended receiver. We show that the maximum length of a communication line used for the needed state creation (the critical length) increases as the dimensionality of the sender and extended receiver increases. We use the model with the sender and extended receiver comprising up to ten qubits for the one-qubit state creation and consider the creation of two particular states, the almost pure state and the maximally mixed state. Regarding the two-qubit state creation, we numerically study the dependence of the critical length on a particular triad of independent eigenvalues to be created using the model with a four-qubit sender without an extended receiver.
机译:我们使用MultiQubit发送器和扩展接收器的局部酉变换来研究远程通信线路的远程通信线路的优化问题。 我们表明,随着发送者的维度和扩展接收器的维度增加,所用的通信线路的最大长度增加增加。 我们使用发件人和扩展接收器的模型,包括多达10个Qubits,用于单个Qubit状态创建,并考虑创建两个特定状态,几乎纯粹的状态和最大混合状态。 关于双量标状态创建,我们在数值上研究了临界长度对特定三合会的依赖性,在没有扩展接收器的情况下使用具有四个Qubit发送器的模型创建的特定特征值。

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