Vianez Pedro M T, Jin Yiqing, Moreno María, Anirban Ankita S, Anthore Anne, Tan Wooi Kiat, Griffiths Jonathan P, Farrer Ian, Ritchie David A, Schofield Andrew J, Tsyplyatyev Oleksandr, Ford Christopher J B
Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge CB3 0HE, UK.
Departamento de Física Aplicada, Universidad de Salamanca, Plaza de la Merced s/n, 37008 Salamanca, Spain.
Sci Adv. 2022 Jun 17;8(24):eabm2781. doi: 10.1126/sciadv.abm2781.
An electron is usually considered to have only one form of kinetic energy, but could it have more, for its spin and charge, by exciting other electrons? In one dimension (1D), the physics of interacting electrons is captured well at low energies by the Tomonaga-Luttinger model, yet little has been observed experimentally beyond this linear regime. Here, we report on measurements of many-body modes in 1D gated wires using tunneling spectroscopy. We observe two parabolic dispersions, indicative of separate Fermi seas at high energies, associated with spin and charge excitations, together with the emergence of two additional 1D "replica" modes that strengthen with decreasing wire length. The interaction strength is varied by changing the amount of 1D intersubband screening by more than 45%. Our findings not only demonstrate the existence of spin-charge separation in the whole energy band outside the low-energy limit of the Tomonaga-Luttinger model but also set a constraint on the validity of the newer nonlinear Tomonaga-Luttinger theory.
电子通常被认为仅具有一种形式的动能,但其能否通过激发其他电子,因其自旋和电荷而具有更多形式的动能呢?在一维(1D)情况下,相互作用电子的物理特性在低能量时可由Tomonaga-Luttinger模型很好地描述,但在该线性区域之外,实验上几乎未观察到什么。在此,我们报告了使用隧穿光谱法对一维门控导线中的多体模式进行的测量。我们观察到两种抛物线型色散,这表明在高能下存在与自旋和电荷激发相关的单独费米海,同时还出现了另外两种随着导线长度减小而增强的一维“复制”模式。通过改变一维子带间屏蔽量超过45%来改变相互作用强度。我们的研究结果不仅证明了在Tomonaga-Luttinger模型低能量极限之外的整个能带中存在自旋-电荷分离,而且还对更新的非线性Tomonaga-Luttinger理论的有效性设置了限制。