Lee June-Young M, Sim H-S
Department of Physics, Korea Advanced Institute of Science and Technology, Daejeon, 34141, Korea.
Nat Commun. 2022 Nov 4;13(1):6660. doi: 10.1038/s41467-022-34329-y.
A collider where particles are injected onto a beam splitter from opposite sides has been used for identifying quantum statistics of identical particles. The collision leads to bunching of the particles for bosons and antibunching for fermions. In recent experiments, a collider was applied to a fractional quantum Hall regime hosting Abelian anyons. The observed negative cross-correlation of electrical currents cannot be understood with fermionic antibunching. Here we predict, based on a conformal field theory and a non-perturbative treatment of non-equilibrium anyon injection, that the collider provides a tool for observation of the braiding statistics of various Abelian and non-Abelian anyons. Its dominant process is not direct collision between injected anyons, contrary to common expectation, but braiding between injected anyons and an anyon excited at the collider. The dependence of the resulting negative cross-correlation on the injection currents distinguishes non-Abelian SU(2) anyons, Ising anyons, and Abelian Laughlin anyons.
一种能使粒子从相对两侧注入到分束器中的对撞机已被用于识别全同粒子的量子统计特性。这种碰撞会导致玻色子的粒子聚束和费米子的反聚束。在最近的实验中,一台对撞机被应用于容纳阿贝尔任意子的分数量子霍尔体系。所观测到的电流负交叉关联无法用费米子反聚束来解释。在此,我们基于共形场论和非平衡任意子注入的非微扰处理方法预测,该对撞机为观测各种阿贝尔和非阿贝尔任意子的编织统计特性提供了一种工具。与通常的预期相反,其主导过程并非注入的任意子之间的直接碰撞,而是注入的任意子与在对撞机处激发的一个任意子之间的编织。所产生的负交叉关联对注入电流的依赖性区分了非阿贝尔SU(2)任意子、伊辛任意子和阿贝尔劳克林任意子。