Fu Hailong, Wang Pengjie, Shan Pujia, Xiong Lin, Pfeiffer Loren N, West Ken, Kastner Marc A, Lin Xi
International Center for Quantum Materials, Peking University, Beijing 100871, China.
Department of Electrical Engineering, Princeton University, Princeton, NJ 08544.
Proc Natl Acad Sci U S A. 2016 Nov 1;113(44):12386-12390. doi: 10.1073/pnas.1614543113. Epub 2016 Oct 18.
Some theories predict that the filling factor 5/2 fractional quantum Hall state can exhibit non-Abelian statistics, which makes it a candidate for fault-tolerant topological quantum computation. Although the non-Abelian Pfaffian state and its particle-hole conjugate, the anti-Pfaffian state, are the most plausible wave functions for the 5/2 state, there are a number of alternatives with either Abelian or non-Abelian statistics. Recent experiments suggest that the tunneling exponents are more consistent with an Abelian state rather than a non-Abelian state. Here, we present edge-current-tunneling experiments in geometrically confined quantum point contacts, which indicate that Abelian and non-Abelian states compete at filling factor 5/2. Our results are consistent with a transition from an Abelian state to a non-Abelian state in a single quantum point contact when the confinement is tuned. Our observation suggests that there is an intrinsic non-Abelian 5/2 ground state but that the appropriate confinement is necessary to maintain it. This observation is important not only for understanding the physics of the 5/2 state but also for the design of future topological quantum computation devices.
一些理论预测,填充因子为5/2的分数量子霍尔态可能呈现非阿贝尔统计特性,这使其成为容错拓扑量子计算的一个候选对象。尽管非阿贝尔帕夫利安态及其粒子-空穴共轭态,即反帕夫利安态,是5/2态最合理的波函数,但也存在许多具有阿贝尔或非阿贝尔统计特性的替代态。近期实验表明,隧穿指数与阿贝尔态而非非阿贝尔态更为一致。在此,我们展示了在几何受限量子点接触中的边缘电流隧穿实验,这些实验表明阿贝尔态和非阿贝尔态在填充因子5/2时相互竞争。我们的结果与当限制条件被调整时,单个量子点接触中从阿贝尔态到非阿贝尔态的转变相一致。我们的观察结果表明存在一个本征非阿贝尔5/2基态,但需要适当的限制条件来维持它。这一观察结果不仅对于理解5/2态的物理特性很重要,而且对于未来拓扑量子计算设备的设计也很重要。