Tewari Sumanta, Das Sarma S, Nayak Chetan, Zhang Chuanwei, Zoller P
Condensed Matter Theory Center, Department of Physics, University of Maryland, College Park, MD 20742, USA.
Phys Rev Lett. 2007 Jan 5;98(1):010506. doi: 10.1103/PhysRevLett.98.010506.
We propose to use the recently predicted two-dimensional "weak-pairing" px + ipy superfluid state of fermionic cold atoms as a platform for topological quantum computation. In the core of a vortex, this state supports a zero-energy Majorana mode, which moves to finite energy in the corresponding topologically trivial "strong-pairing" state. By braiding vortices in the "weak-pairing" state, unitary quantum gates can be applied to the Hilbert space of Majorana zero modes. For readout of the topological qubits, we propose realistic schemes suitable for atomic superfluids.
我们提议将最近预测的费米子冷原子二维“弱配对”px + ipy超流态用作拓扑量子计算的平台。在涡旋核心,这种状态支持一个零能量马约拉纳模式,而在相应的拓扑平凡“强配对”状态下该模式会移动到有限能量。通过在“弱配对”状态下编织涡旋,可以将酉量子门应用于马约拉纳零模式的希尔伯特空间。为了读出拓扑量子比特,我们提出了适用于原子超流体的实际方案。