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扭曲的CrSBr双层中的莫尔条纹磁性和莫尔条纹激子

Moiré magnetism and moiré excitons in twisted CrSBr bilayers.

作者信息

Liu Junyi, Zhang Xu, Lu Gang

机构信息

Department of Physics and Astronomy, California State University Northridge, Northridge, CA 91330-8268.

出版信息

Proc Natl Acad Sci U S A. 2025 Jan 7;122(1):e2413326121. doi: 10.1073/pnas.2413326121. Epub 2024 Dec 31.

Abstract

Moiré excitons and moiré magnetism are essential to semiconducting van der Waals magnets. In this work, we perform a comprehensive first-principles study to elucidate the interplay of electronic excitation and magnetism in twisted magnetic CrSBr bilayers. We predict a twist-induced quantum phase transition for interlayer magnetic coupling and estimate the critical twist angle below which moiré magnetism with mixed ferromagnetic and antiferromagnetic domains could emerge. Localized one-dimensional moiré excitons are stable if the interlayer coupling is ferromagnetic and become unstable if the coupling turns to antiferromagnetic. Exciton energy modulation by magnons is estimated and dependence of exciton oscillator strength on the twist angle and interlayer coupling is analyzed. An orthogonally twisted bilayer is revealed to exhibit layer-dependent, anisotropic optical transitions. Electric field is shown to induce net magnetic moments in moiré excitons, endowing them with exceedingly long lifetimes. Our work lays the foundation for using magnetic moiré bilayers in spintronic, optoelectronic, and quantum information applications.

摘要

莫尔激子和莫尔磁性对于半导体范德华磁体至关重要。在这项工作中,我们进行了全面的第一性原理研究,以阐明扭曲磁性CrSBr双层中电子激发与磁性之间的相互作用。我们预测了层间磁耦合的扭曲诱导量子相变,并估计了临界扭曲角,低于该角度可能会出现具有混合铁磁和反铁磁畴的莫尔磁性。如果层间耦合是铁磁性的,局域一维莫尔激子是稳定的;如果耦合变为反铁磁性,则会变得不稳定。估计了磁振子对激子能量的调制,并分析了激子振子强度对扭曲角和层间耦合的依赖性。揭示了正交扭曲双层表现出与层相关的各向异性光学跃迁。电场被证明能在莫尔激子中诱导净磁矩,赋予它们极长的寿命。我们的工作为在自旋电子学、光电子学和量子信息应用中使用磁性莫尔双层奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ea1/11725868/fe01edba9d4e/pnas.2413326121fig01.jpg

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