School of Physics and Astronomy, University of Birmingham, Birmingham B15 2TT, United Kingdom.
Cavendish Laboratory, University of Cambridge, J J Thomson Avenue, Cambridge CB3 0HE, United Kingdom.
Phys Rev Lett. 2015 May 15;114(19):196401. doi: 10.1103/PhysRevLett.114.196401. Epub 2015 May 11.
Studying interacting fermions in one dimension at high energy, we find a hierarchy in the spectral weights of the excitations theoretically, and we observe evidence for second-level excitations experimentally. Diagonalizing a model of fermions (without spin), we show that levels of the hierarchy are separated by powers of R^{2}/L^{2}, where R is a length scale related to interactions and L is the system length. The first-level (strongest) excitations form a mode with parabolic dispersion, like that of a renormalized single particle. The second-level excitations produce a singular power-law line shape to the first-level mode and multiple power laws at the spectral edge. We measure momentum-resolved tunneling of electrons (fermions with spin) from or to a wire formed within a GaAs heterostructure, which shows parabolic dispersion of the first-level mode and well-resolved spin-charge separation at low energy with appreciable interaction strength. We find structure resembling the second-level excitations, which dies away quite rapidly at high momentum.
我们在高能下研究一维中的相互作用费米子,从理论上发现激发的谱权重存在等级结构,并且从实验上观察到了二级激发的证据。通过对角化一个无自旋费米子模型,我们表明等级结构的能级间隔为 R^{2}/L^{2}的幂次,其中 R 是与相互作用有关的长度尺度,L 是系统长度。第一级(最强)激发形成一个具有抛物线色散的模式,类似于重整化的单个粒子。二级激发在第一级模式上产生奇异的幂律线形状,并在谱边产生多个幂律。我们测量了来自或流向 GaAs 异质结构内形成的线的电子(具有自旋的费米子)的动量分辨隧道,该线显示第一级模式的抛物线色散以及在低能下具有可观相互作用强度的自旋-电荷分离的良好分辨率。我们发现了类似于二级激发的结构,在高能动量下迅速消失。