Datta Animesh, Shaji Anil, Caves Carlton M
Department of Physics and Astronomy, MSC07-4220, University of New Mexico, Albuquerque, New Mexico 87131, USA.
Phys Rev Lett. 2008 Feb 8;100(5):050502. doi: 10.1103/PhysRevLett.100.050502. Epub 2008 Feb 5.
We use quantum discord to characterize the correlations present in the model called deterministic quantum computation with one quantum bit (DQC1), introduced by Knill and Laflamme [Phys. Rev. Lett. 81, 5672 (1998)10.1103/PhysRevLett.81.5672]. The model involves a collection of qubits in the completely mixed state coupled to a single control qubit that has nonzero purity. The initial state, operations, and measurements in the model all point to a natural bipartite split between the control qubit and the mixed ones. Although there is no entanglement between these two parts, we show that the quantum discord across this split is nonzero for typical instances of the DQC1 ciruit. Nonzero values of discord indicate the presence of nonclassical correlations. We propose quantum discord as figure of merit for characterizing the resources present in this computational model.
我们使用量子失协来刻画一种名为单量子比特确定性量子计算(DQC1)模型中存在的关联,该模型由Knill和Laflamme提出[《物理评论快报》81, 5672 (1998)10.1103/PhysRevLett.81.5672]。该模型涉及处于完全混合态的一组量子比特,它们与一个具有非零纯度的单个控制量子比特耦合。模型中的初始态、操作和测量都指向控制量子比特与混合量子比特之间自然的二分划分。尽管这两部分之间不存在纠缠,但我们表明,对于DQC1电路的典型实例,跨越这种划分的量子失协是非零的。失协的非零值表明存在非经典关联。我们提出将量子失协作为表征此计算模型中存在的资源的品质因数。