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◆ Physical Review Letters2026-06-18· Condensed matter physics

Space-Charge-Limited van der Waals Spin Transistor

Thomas K. M. Graham, Yu‐Xuan Wang, Niranjana Renjith Nair, Kseniia Mosina, Kenji Watanabe, Takashi Taniguchi, Zdeněk Sofer, Brian B. Zhou

原始摘要(英文原文)· Original abstract
Integrating semiconducting and magnetic materials could combine transistorlike operation with nonvolatility and enable architectures such as logic in memory. Here, we employ correlated electrical transport and scanning nitrogen-vacancy center magnetic imaging to elucidate a spin transistor concept that amalgamates vertical and lateral hopping transport inside a 2D antiferromagnetic semiconductor, mechanistically distinct from vertical tunneling devices. Our device, based on a monolayer-bilayer junction in CrSBr, displays giant, gate-tunable magnetoresistance driven by the dual action of electrostatic doping on space-charge-limited lateral conduction and interlayer exchange coupling. Moreover, we visualize a field-trainable, layer-sharing effect that selects between coherent or domain-wall reversal at the spin-flip transition, enabling multilevel, memristive conductance states. Our layer-dependent space charge mechanism for convergent electrical and magnetic control opens opportunities to address limitations in contemporary computing.
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Space-Charge-Limited van der Waals Spin Transistor — 科研速览 Science Skim