Mueed M A, Kamburov D, Pfeiffer L N, West K W, Baldwin K W, Shayegan M
Department of Electrical Engineering, Princeton University, Princeton, New Jersey 08544, USA.
Phys Rev Lett. 2016 Dec 9;117(24):246801. doi: 10.1103/PhysRevLett.117.246801. Epub 2016 Dec 6.
Via the application of a parallel magnetic field, we induce a single-layer to bilayer transition in two-dimensional electron systems confined to wide GaAs quantum wells and study the geometric resonance of composite fermions (CFs) with a periodic density modulation in our samples. The measurements reveal that CFs exist close to bilayer quantum Hall states, formed at Landau level filling factors ν=1 and 1/2. Near ν=1, the geometric resonance features are consistent with half the total electron density in the bilayer system, implying that CFs prefer to stay in separate layers and exhibit a two-component behavior. In contrast, close to ν=1/2, CFs appear single-layer-like (single component) as their resonance features correspond to the total density.
通过施加平行磁场,我们在限制于宽GaAs量子阱中的二维电子系统中诱导单层到双层的转变,并研究了我们样品中具有周期性密度调制的复合费米子(CFs)的几何共振。测量结果表明,CFs存在于接近双层量子霍尔态的地方,这些态在朗道能级填充因子ν = 1和1/2时形成。在ν = 1附近,几何共振特征与双层系统中总电子密度的一半一致,这意味着CFs倾向于停留在不同的层中并表现出双组分行为。相比之下,在接近ν = 1/2时,CFs表现出类似单层的(单组分)特征,因为它们的共振特征对应于总密度。