论文标题
具有连贯状态的最佳量子可编程的投影测量
Optimal quantum-programmable projective measurements with coherent states
论文作者
论文摘要
我们考虑可以使用光线相干状态对其进行编程的设备,以在输入相干状态下近似给定的投影测量。我们提供并讨论使用线性光学元件的该可编程投影测量设备的三个实际实现,仅涉及平衡的梁拆分器和单个光子阈值检测器。这三个方案以非破坏性方式最佳地将任何投影测量结果近似于程序相干状态。我们将其进一步扩展到没有关于输入状态的假设的情况。在这种情况下,我们表明我们的方案可以有效验证无界的不受信任的来源,其仅具有局部相干状态,平衡的梁拆分器和阈值检测器。利用可编程测量和广义掉期测试之间的链接,我们作为直接应用表明,我们的方案在现有的量子指纹方案中提供了渐近的二次改进,以近似两个单位向量之间的欧几里得距离。
We consider a device which can be programmed using coherent states of light to approximate a given projective measurement on an input coherent state. We provide and discuss three practical implementations of this programmable projective measurement device with linear optics, involving only balanced beam splitters and single photon threshold detectors. The three schemes optimally approximate any projective measurement onto a program coherent state in a non-destructive fashion. We further extend these to the case where there are no assumptions on the input state. In this setting, we show that our scheme enables an efficient verification of an unbounded untrusted source with only local coherent states, balanced beam splitters, and threshold detectors. Exploiting the link between programmable measurements and generalised swap test, we show as a direct application that our schemes provide an asymptotically quadratic improvement in existing quantum fingerprinting protocol to approximate the Euclidean distance between two unit vectors.