论文标题

2D半导体中的激子耦合相干元音

Exciton-Coupled Coherent Magnons in a 2D Semiconductor

论文作者

Bae, Youn Jue, Wang, Jue, Scheie, Allen, Xu, Junwen, Chica, Daniel G., Diederich, Geoffrey M., Cenker, John, Ziebel, Michael E., Bai, Yusong, Ren, Haowen, Dean, Cory R., Delor, Milan, Xu, Xiaodong, Roy, Xavier, Kent, Andrew D., Zhu, Xiaoyang

论文摘要

二维(2D)磁性半导体具有较大的振荡器强度的紧密结合激子,并且由于存在带隙和空间限制,因此具有较大的振荡器强度和潜在的长寿命相干元音。尽管镁和激子在能量上被数量级不匹配,但它们的耦合可以导致对自旋信息的有效访问。在这里,我们报告了2D Van der Waals(VDW)抗铁磁(AFM)半导体CRSBR中强的木氧化耦合。通过差距激发发射的相干元音调节层间杂交,从而导致激发能量的动态调节。时间分辨的激子传感揭示了可以连贯行驶7微米,相干时间高于5 ns的镁。我们观察到这种激子耦合的相干元音在均匀数和奇数的层,有和没有补偿磁化,直到双层极限。鉴于VDW异质结构的多功能性,这些连贯的2D元号可能是光学上可访问的磁纳学和量子互连的基础。

Two-dimensional (2D) magnetic semiconductors feature both tightly-bound excitons with large oscillator strength and potentially long-lived coherent magnons due to the presence of bandgap and spatial confinement. While magnons and excitons are energetically mismatched by orders of magnitude, their coupling can lead to efficient optical access to spin information. Here we report strong magnon-exciton coupling in the 2D van der Waals (vdW) antiferromagnetic (AFM) semiconductor CrSBr. Coherent magnons launched by above-gap excitation modulate the interlayer hybridization, which leads to dynamic modulation of excitonic energies. Time-resolved exciton sensing reveals magnons that can coherently travel beyond 7 micrometer, with coherence time above 5 ns. We observe this exciton-coupled coherent magnons in both even and odd number of layers, with and without compensated magnetization, down to the bilayer limit. Given the versatility of vdW heterostructures, these coherent 2D magnons may be basis for optically accessible magnonics and quantum interconnects.

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