材料科学
凝聚态物理
低温恒温器
垂直的
极限抗拉强度
磁铁
格子(音乐)
空中骑兵
磁场
涡流
超导电性
复合材料
物理
机械
几何学
量子力学
数学
声学
作者
David Fobes,Yongkang Luo,N. León-Brito,E. D. Bauer,Victor Fanelli,Mark A. Taylor,Lisa DeBeer‐Schmitt,M. Janoschek
摘要
We report a detailed small-angle neutron scattering (SANS) study of the skyrmion lattice phase of MnSi under compressive and tensile strain. In particular, we demonstrate that tensile strain applied to the skyrmion lattice plane, perpendicular to the magnetic field, acts to destabilize the skyrmion lattice phase. This experiment was enabled by our development of a versatile strain cell, unique in its ability to select the application of either tensile or compressive strain in-situ by using two independent helium-actuated copper pressure transducers, whose design has been optimized for magnetic SANS on modulated long-period magnetic structures and vortex lattices, and is compact enough to fit in common sample environments such as cryostats and superconducting magnets.
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