Miková M, Straka I, Mičuda M, Krčmarský V, Dušek M, Ježek M, Fiurášek J, Filip R
Department of Optics, Faculty of Science, Palacký University, 17. listopadu 1192/12, 771 46 Olomouc, Czech Republic.
Sci Rep. 2016 Aug 26;6:32125. doi: 10.1038/srep32125.
One of the strengths of quantum information theory is that it can treat quantum states without referring to their particular physical representation. In principle, quantum states can be therefore fully swapped between various quantum systems by their mutual interaction and this quantum state transfer is crucial for many quantum communication and information processing tasks. In practice, however, the achievable interaction time and strength are often limited by decoherence. Here we propose and experimentally demonstrate a procedure for faithful quantum state transfer between two weakly interacting qubits. Our scheme enables a probabilistic yet perfect unidirectional transfer of an arbitrary unknown state of a source qubit onto a target qubit prepared initially in a known state. The transfer is achieved by a combination of a suitable measurement of the source qubit and quantum filtering on the target qubit depending on the outcome of measurement on the source qubit. We experimentally verify feasibility and robustness of the transfer using a linear optical setup with qubits encoded into polarization states of single photons.
量子信息理论的优势之一在于它能够处理量子态,而无需涉及其特定的物理表示。原则上,量子态因此可以通过相互作用在各种量子系统之间完全交换,并且这种量子态转移对于许多量子通信和信息处理任务至关重要。然而,在实际中,可实现的相互作用时间和强度常常受到退相干的限制。在此,我们提出并通过实验证明了一种在两个弱相互作用量子比特之间进行可靠量子态转移的过程。我们的方案能够以概率性但完美的方式将源量子比特的任意未知态单向转移到初始制备于已知态的目标量子比特上。该转移是通过对源量子比特进行适当测量以及根据源量子比特的测量结果对目标量子比特进行量子滤波相结合来实现的。我们使用将量子比特编码为单光子偏振态的线性光学装置,通过实验验证了该转移的可行性和稳健性。