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QUANTUM MAGNETISM AND SUPERCONDUCTIVITY

机译:量子磁性和超导性

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The spin of the neutron allows neutron scattering to reveal the magnetic structure and dynamics of materials over anometre length scales and picosecond timescales. Neutron scattering is particularly in demand in order to understand high-temperature superconductors, which lie close to magnetically ordered phases, and highly correlated metals with giant effective fermion masses, which lie close to magnetic order or pass through a mysterious phase of hidden order before becoming superconducting. Neutron scattering also is the probe of choice for revealing new phases of matter and new particles, as seen in the surprising behaviour of quantum spin chains and ladders where mass gaps and excited triplons replace conventional spin waves. Examples are given of quantum phenomena where neutron scattering has played a defining role that challenges current understanding of condensed matter.
机译:中子的自旋使中子散射可以揭示磁性结构和材料在直径范围和皮秒时间范围内的动力学。为了理解接近磁性有序相的高温超导体以及具有巨大有效费米子质量的高度相关的金属,特别是需要中子散射,它们具有接近磁性顺序或经过神秘的隐蔽顺序相,然后变成超导。中子散射也是揭示物质和新粒子新相的理想选择,从量子自旋链和阶梯的惊人行为可以看出,其中质量间隙和激发的三重子取代了常规自旋波。在量子现象的例子中,中子散射起了决定性的作用,挑战了目前对凝聚态物质的理解。

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