论文标题

磁性和非磁掺杂对MGB $ _2 $中涡旋晶格的影响

Effects of magnetic and non-magnetic doping on the vortex lattice in MgB$_2$

论文作者

Louden, E. R., Manni, S., Van Zandt, J. E., Leishman, A. W. D., Taufour, V., Bud'ko, S. L., DeBeer-Schmitt, L., Honecker, D., Dewhurst, C. D., Canfield, P. C., Eskildsen, M. R.

论文摘要

使用小角度的中子散射,我们研究了沿$ C $轴施加的磁场的超导MGB $ _2 $的涡旋晶格,并用锰或碳掺杂,以实现对临界温度的类似抑制。对于MN掺杂,涡旋晶格相图在质量上保持与纯MGB $ _2 $的定性相似,经历了场和温度驱动的$ 30^{\ circ} $旋转过渡,这仅表示对涡旋 - 涡流相互作用的适度效果。相比之下,在C掺杂情况下,涡旋晶格旋转过渡完全抑制,这可能是由于电子结构的变化会影响MGB2中超导性的两波段/两间隙性质。涡旋晶格纵向相关长度显示了相反的行为,在纯和C掺杂的MGB $ _2 $之间大致保持不变,而在MN掺杂的情况下则显着降低。然而,在MN掺杂样品中也可以看到广泛的涡旋晶格放标率和相关的激活行为与纯MGB $ _2 $中的涡旋晶格过渡一起观察到。这表明涡旋晶格混乱与涡旋固定无关紧要。

Using small-angle neutron scattering we have studied the vortex lattice in superconducting MgB$_2$ with the magnetic field applied along the $c$-axis, doped with either manganese or carbon to achieve a similar suppression of the critical temperature. For Mn-doping, the vortex lattice phase diagram remains qualitatively similar to that of pure MgB$_2$, undergoing a field-and temperature-driven $30^{\circ}$ rotation transition, indicating only a modest effect on the vortex-vortex interaction. In contrast, the vortex lattice rotation transition is completely suppressed in the C-doped case, likely due to a change in the electronic structure which affects the two-band/two-gap nature of superconductivity in MgB2. The vortex lattice longitudinal correlation length shows the opposite behavior, remaining roughly unchanged between pure and C-doped MgB$_2$ while it is significantly reduced in the Mn-doped case. However, the extensive vortex lattice metastability and related activated behavior, observed in conjunction with the vortex lattice transition in pure MgB$_2$, is also seen in the Mn doped sample. This shows that the vortex lattice disordering is not associated with a substantially increased vortex pinning.

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