Yamashita T, Tanikawa K, Takahashi S, Maekawa S
Institute for Materials Research, Tohoku University, Sendai, Miyagi 980-8577, Japan.
Phys Rev Lett. 2005 Aug 26;95(9):097001. doi: 10.1103/PhysRevLett.95.097001. Epub 2005 Aug 22.
Solid-state qubits have the potential for the large-scale integration and for the flexibility of layout for quantum computing. However, their short decoherence time due to the coupling to the environment remains an important problem to be overcome. We propose a new superconducting qubit which incorporates a spin-electronic device: the qubit consists of a superconducting ring with a ferromagnetic pi junction which has a metallic contact and a normal Josephson junction with an insulating barrier. Thus, a quantum coherent two-level state is formed without an external magnetic field. This feature and the simple structure of the qubit make it possible to reduce its size leading to a long decoherence time.
固态量子比特具有实现大规模集成以及量子计算布局灵活性的潜力。然而,由于与环境耦合导致的退相干时间较短,仍然是一个有待克服的重要问题。我们提出了一种新型超导量子比特,它集成了一个自旋电子器件:该量子比特由一个带有铁磁π结的超导环组成,铁磁π结具有一个金属接触和一个带有绝缘势垒的常规约瑟夫森结。因此,在没有外部磁场的情况下形成了一个量子相干二能级态。量子比特的这一特性和简单结构使得缩小其尺寸成为可能,从而延长退相干时间。