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Diffraction line-shapes, Fermi surface nesting, and quantum criticality in antiferromagnetic chromium at high pressure (invited)

机译:衍射线形状,费米表面嵌套,高压(邀请)反铁磁铬中的量子临界性

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We explore the behavior of the nested bandstructure of chromium as a function of temperature and pressure to the point where magnetism disappears. X-ray diffraction measurements of the charge order parameter suggest that the nesting condition is maintained at high pressure, where the spin density wave ground state is destabilized by a continuous quantum phase transition. By comparing diffraction line-shapes measured throughout the temperature-pressure phase diagram we are able to identify and describe three regimes: thermal near-critical, weak coupling ground state, and quantum critical.
机译:我们探讨了铬的嵌套带状结构的行为,作为温度和压力的函数,到磁力消失的点。电荷顺序参数的X射线衍射测量表明嵌套条件保持在高压下,其中旋转密度波接地状态通过连续量子相变不稳定。通过比较在整个温度压力相位图中测量的衍射线形状,我们能够识别和描述三个方案:热近临界,耦合接地状态和量子临界。

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