Laboratoire Pierre Aigrain, Ecole Normale Supérieure, CNRS (UMR8551), Université Pierre et Marie Curie, Université Paris Diderot 24 rue Lhomond, Cedex 05, Paris 75231, France.
Nat Commun. 2013;4:1839. doi: 10.1038/ncomms2788.
Coulomb interactions have a major role in one-dimensional electronic transport. They modify the nature of the elementary excitations from Landau quasiparticles in higher dimensions to collective excitations in one dimension. Here we report the direct observation of the collective neutral and charge modes of the two chiral co-propagating edge channels of opposite spins of the quantum Hall effect at filling factor 2. Generating a charge density wave at frequency f in the outer channel, we measure the current induced by inter-channel Coulomb interaction in the inner channel after a 3-μm propagation length. Varying the driving frequency from 0.7 to 11 GHz, we observe damped oscillations in the induced current that result from the phase shift between the fast charge and slow neutral eigenmodes. We measure the dispersion relation and dissipation of the neutral mode from which we deduce quantitative information on the interaction range and parameters.
库仑相互作用在一维电子输运中起着重要作用。它们改变了高维朗道准粒子的基本激发态的性质,使其成为一维中的集体激发态。在这里,我们报告了在填充因子为 2 的量子霍尔效应中,两个手性共传播的边缘通道的相反自旋的集体中性和电荷模式的直接观察。在外通道中以频率 f 产生电荷密度波,我们测量了在经过 3μm 传播长度后内通道中由于通道间库仑相互作用引起的电流。从 0.7 到 11GHz 改变驱动频率,我们观察到感应电流中的阻尼振荡,这是由于快电荷和慢中性本征模式之间的相位差引起的。我们测量了中性模式的色散关系和耗散,从中我们推导出关于相互作用范围和参数的定量信息。