arXiv · 2609.26916
Interlayer-correlated fractional quantum Hall state in a trilayer electron system
Abstract
In multilayer quantum Hall systems, when the layer separation is sufficiently small, the interplay between intralayer and interlayer Coulomb interactions can lead to exotic, multi-component, many-body states. A particular example is the even-denominator fractional quantum Hall state (FQHS) at total filling factor $ν=1/2$ in bilayer systems with negligible interlayer tunneling. This state can be understood as a generalized Laughlin state described by the Halperin-Laughlin $Ψ_{331}$ wavefunction. While such correlated states have been extensively explored in bilayers, little is known about their counterparts in systems with more than two layers. Here, we investigate a trilayer two-dimensional electron system confined to ultrahigh-quality GaAs triple quantum wells. We observe an exotic FQHS at total filling factor $ν=5/7$, evinced by a deep longitudinal resistance minimum and a quantized Hall plateau, when the side layers have a density larger than the middle layer and $d/l_B \simeq 2.2$ ($d$ is the interlayer distance and $l_B$ the magnetic length). This state is naturally interpreted as the long-predicted trilayer, generalized Laughlin ($Ψ_{33311}$) state, characterized by $ν=1/3$-like intralayer correlation within each layer and $ν=1$-like interlayer correlation between neighboring layers. Our observation establishes a new member of the Halperin-Laughlin many-body states that extends interlayer coherence to three coupled layers.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Chengyu Wang, C. T. Tai, N. Toemtrisna, A. Gupta, L. N. Pfeiffer, K. W. Baldwin, M. Shayegan. 2026-09-22. Interlayer-correlated fractional quantum Hall state in a trilayer electron system. https://doi.org/10.1103/4bpx-3mwm
Cite the original work for its findings. Save a collection to share your selection of sources.