Department of Physics, Virginia Tech, Blacksburg, Virginia 24061, USA.
Phys Rev Lett. 2013 Nov 27;111(22):220401. doi: 10.1103/PhysRevLett.111.220401. Epub 2013 Nov 25.
Pairing between spinless fermions can generate Majorana fermion excitations that exhibit intriguing properties arising from nonlocal correlations. But, simple models indicate that nonlocal correlation between Majorana fermions becomes unstable at nonzero temperatures. We address this issue by showing that anisotropic interactions between dipolar fermions in optical lattices can be used to significantly enhance thermal stability. We construct a model of oriented dipolar fermions in a square optical lattice. We find that domains established by strong interactions exhibit enhanced correlation between Majorana fermions over large distances and long times even at finite temperatures, suitable for stable redundancy encoding of quantum information. Our approach can be generalized to a variety of configurations and other systems, such as quantum wire arrays.
自旋无费米子配对可以产生马约拉纳费米子激发,这些激发表现出源于非局域相关的有趣性质。然而,简单的模型表明,马约拉纳费米子之间的非局域相关在非零温度下变得不稳定。我们通过表明各向异性相互作用在光学晶格中的偶极子费米子之间可以显著提高热稳定性来解决这个问题。我们构建了一个在正方形光学晶格中的有向偶极子费米子模型。我们发现,即使在有限温度下,强相互作用建立的畴也表现出了在大距离和长时间上的增强的马约拉纳费米子之间的相关性,适合量子信息的稳定冗余编码。我们的方法可以推广到各种配置和其他系统,例如量子线阵列。