Eisert J, Scheel S, Plenio M B
QOLS, Blackett Laboratory, Imperial College of Science, Technology and Medicine, London, SW7 2BW, United Kingdom.
Phys Rev Lett. 2002 Sep 23;89(13):137903. doi: 10.1103/PhysRevLett.89.137903. Epub 2002 Sep 4.
We show that no distillation protocol for Gaussian quantum states exists that relies on (i) arbitrary local unitary operations that preserve the Gaussian character of the state and (ii) homodyne detection together with classical communication and postprocessing by means of local Gaussian unitary operations on two symmetric identically prepared copies. This is in contrast to the finite-dimensional case, where entanglement can be distilled in an iterative protocol using two copies at a time. The ramifications for the distribution of Gaussian states over large distances will be outlined. We also comment on the generality of the approach and sketch the most general form of a Gaussian local operation with classical communication in a bipartite setting.
我们证明,不存在一种用于高斯量子态的蒸馏协议,该协议依赖于:(i)保持态的高斯特性的任意局部酉操作;以及(ii)对两个对称制备的相同副本进行零差检测,并结合经典通信以及通过局部高斯酉操作进行的后处理。这与有限维情况形成对比,在有限维情况下,可以通过每次使用两个副本的迭代协议来蒸馏纠缠。将概述高斯态在大距离上分布的影响。我们还评论了该方法的一般性,并勾勒了二分设置中具有经典通信的高斯局部操作的最一般形式。