Fuwa Maria, Toba Shunsuke, Takeda Shuntaro, Marek Petr, Mišta Ladislav, Filip Radim, van Loock Peter, Yoshikawa Jun-Ichi, Furusawa Akira
Department of Applied Physics, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Department of Optics, Palacký University, 17. listopadu 1192/12, 77146 Olomouc, Czech Republic.
Phys Rev Lett. 2014 Nov 28;113(22):223602. doi: 10.1103/PhysRevLett.113.223602. Epub 2014 Nov 25.
We experimentally demonstrate the noiseless teleportation of a single photon by conditioning on quadrature Bell measurement results near the origin in phase space and thereby circumventing the photon loss that otherwise occurs even in optimal gain-tuned continuous-variable quantum teleportation. In general, thanks to this loss suppression, the noiseless conditional teleportation can preserve the negativity of the Wigner function for an arbitrary pure input state and an arbitrary pure entangled resource state. In our experiment, the positive value of the Wigner function at the origin for the unconditional output state, W(0,0)=0.015±0.001, becomes clearly negative after conditioning, W(0,0)=-0.025±0.005, illustrating the advantage of noiseless conditional teleportation.
我们通过对相空间中靠近原点的正交贝尔测量结果进行条件设定,实验证明了单光子的无噪声量子隐形传态,从而规避了即使在最优增益调谐的连续变量量子隐形传态中也会出现的光子损失。一般来说,由于这种损失抑制,无噪声条件量子隐形传态对于任意纯输入态和任意纯纠缠资源态都可以保持维格纳函数的非正定性。在我们的实验中,无条件输出态在原点处的维格纳函数正值W(0,0)=0.015±0.001,在进行条件设定后明显变为负值W(0,0)= -0.025±0.005,说明了无噪声条件量子隐形传态的优势。