Bose Sougato
Institute for Quantum Information, MC 107-81, California Institute of Technology, Pasadena, California 91125-8100, USA.
Phys Rev Lett. 2003 Nov 14;91(20):207901. doi: 10.1103/PhysRevLett.91.207901. Epub 2003 Nov 10.
We propose a scheme for using an unmodulated and unmeasured spin chain as a channel for short distance quantum communications. The state to be transmitted is placed on one spin of the chain and received later on a distant spin with some fidelity. We first obtain simple expressions for the fidelity of quantum state transfer and the amount of entanglement sharable between any two sites of an arbitrary Heisenberg ferromagnet using our scheme. We then apply this to the realizable case of an open ended chain with nearest neighbor interactions. The fidelity of quantum state transfer is obtained as an inverse discrete cosine transform and as a Bessel function series. We find that in a reasonable time, a qubit can be directly transmitted with better than classical fidelity across the full length of chains of up to 80 spins. Moreover, our channel allows distillable entanglement to be shared over arbitrary distances.
我们提出了一种方案,即使用未经调制和测量的自旋链作为短距离量子通信的信道。待传输的状态置于链的一个自旋上,之后在远处的一个自旋上以一定保真度接收。我们首先使用我们的方案得到了任意海森堡铁磁体任意两个位点之间量子态转移保真度和可共享纠缠量的简单表达式。然后我们将其应用于具有最近邻相互作用的开放式链的可实现情况。量子态转移保真度通过逆离散余弦变换和贝塞尔函数级数得到。我们发现,在合理的时间内,一个量子比特可以以优于经典保真度的方式直接在长达80个自旋的链的全长上进行传输。此外,我们的信道允许在任意距离上共享可提纯纠缠。