Benefits of Best Practice Guidelines in Spine Fusion: Comparable Correction in AIS with Higher Density and Fewer Complications

Xiao Hu,Aashish Sapkota,Zhixiang Hu, Andrei T. Savici, Alexander I. Kolesnikov,John M. Tranquada,Cedomir Petrovic,Igor A. Zaliznyak

PHYSICAL REVIEW B(2023)

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摘要
We report inelastic neutron scattering measurements of magnetic excitations in YbMnSb2, a low-carrierdensity Dirac semimetal in which the antiferromagnetic Mn layers are interleaved with Sb layers that host Dirac fermions. We observe a measurable broadening of spin waves, which is consistent with substantial spin-fermion coupling. The spin-wave damping ? in YbMnSb2 is roughly twice larger compared to that in a sister material, YbMnBi2, where an indication of a small damping consistent with a theoretical analysis of the spin-fermion coupling was reported. The interplane interaction between the Mn layers in YbMnSb2 is also much stronger, suggesting that the interaction mechanism is rooted in the same spin-fermion coupling. Our results establish the systematics of spin-fermion interactions in layered magnetic Dirac materials.
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