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Conclusive and arbitrarily perfect quantum-state transfer using parallel spin-chain channels

机译:使用平行自旋链通道的结论性和任意完美的量子态转移

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We suggest a protocol for perfect quantum communication through spin-chain channels. By combining a dual-rail encoding with measurements only at the receiving end, we can get conclusively perfect state transfer, whose probability of success can be made arbitrarily close to unity. As an example of such an amplitude-delaying channel, we show how two parallel Heisenberg spin chains can be used as quantum wires. Perfect state transfer with a probability of failure lower than P in a Heisenberg chain of N spin-1/2 particles can be achieved in a timescale of the order of (0.33h/J)N-1.7ln P. We demonstrate that our scheme is more robust to decoherence and nonoptimal timing than any scheme using single spin chains.
机译:我们建议通过自旋链通道实现完美量子通信的协议。通过将双轨编码与仅在接收端进行测量相结合,我们可以得出结论性的完美状态转移,其成功概率可以任意地接近于1。作为这种振幅延迟通道的示例,我们显示了如何将两个平行的海森堡自旋链用作量子线。可以在大约(0.33h / J)N-1.7 ln P 的时间尺度上实现完美状态转移,其故障概率低于N自旋1/2粒子的海森堡链中的P。我们证明,与使用单个自旋链的任何方案相比,我们的方案对去相干性和非最佳时序更健壮。

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