论文标题
通过混合纠缠多光量Qubit信息的耐损失传播
Loss-tolerant transmission of multiphoton-qubit information via hybrid entanglement
论文作者
论文摘要
结果表明,使用多光子量子尺,可以使用线性光学器件和on-Off PhotodeTector进行几乎确定性的铃铛测量[Phys。莱特牧师。 114,113603(2015)]。但是,在有损环境下,多光子量子量比单光子Qub比单量子量子更脆弱。在本文中,我们提出并分析了一种计划,以使用耐损失载体量子标题的混合纠缠传送多光子量信息。我们考虑了三个载体值的候选者:一个相干状态量子,一个单光子极化量子和真空和单个光子量子量子。我们发现,使用真空和单个量子量子量子的传送范围比光子数$ n \ geq 4 $的多光子量子损失大约高约10倍($ f \ geq 90 \%$)。当相干状态量子量子的编码可能比真空和单个光子量子量子的振幅较小至$α<0.78 $时,甚至更好。我们进一步指出,我们的方案传送状态的保真度取决于载体量子标立中的损失,而成功概率仅取决于要传送的多光量量子量的损失。我们的研究表明,混合体系结构可能会补充每个量子的编码的弱点。
It was shown that using multiphoton qubits, a nearly deterministic Bell-state measurement can be performed with linear optics and on-off photodetectors [Phys. Rev. Lett. 114, 113603 (2015)]. However, multiphoton qubits are generally more fragile than single-photon qubits under a lossy environment. In this paper, we propose and analyze a scheme to teleport multiphoton-qubit information using hybrid entanglement with a loss-tolerant carrier qubit. We consider three candidates for the carrier qubit: a coherent-state qubit, a single-photon polarization qubit, and a vacuum-and-single-photon qubit. We find that teleportation with the vacuum-and-single-photon qubit tolerates about 10 times greater photon losses than with the multiphoton qubit of the photon number $N \geq 4$ in the high fidelity regime ($F\geq 90\%$). The coherent-state qubit encoding may be even better than the vacuum-and-single-photon qubit as the carrier when its amplitude is as small as $α<0.78$. We further point out that the fidelity of the teleported state by our scheme is determined by loss in the carrier qubit while the success probability depends on loss only in the multiphoton qubit to be teleported. Our study implies that the hybrid architecture may complement the weaknesses of each qubit encoding.