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Modulated magnetism in PrPtAl

机译:PrPtAl中的调制磁

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The transition between paramagnetism and ferromagnetism is the paradigm for a continuous phase transition at finite temperature. When such a transition is tuned to zero temperature in clean materials, the growth of low-energy zero-point fluctuations potentially drives an array of phenomena, including the formation of novel states such as non-conventional superconductivity. Experimentally, the growth of the fluctuations, however, is curtailed and the transition becomes discontinuous as its temperature is reduced. This is understood to arise from non-analytic corrections to the free energy that always occur(1). In a recent theory(2,3), changes of the excitation spectrum are self-consistently considered alongside the ground state. This analysis reveals that a transition to a new state may be an alternative outcome. As the excitation spectrum (the 'disorder') is pivotal to promoting the new 'order' this mechanism is referred to as 'order by disorder'. Here, we report the discovery of modulated order in PrPtAl, consistent with complex spirals, at the boundary between paramagnetism and ferromagnetism, giving the first clear experimental realization of such a state.
机译:顺磁性和铁磁性之间的过渡是在有限温度下连续相变的范例。当在干净的材料中将这种转变调整为零温度时,低能零点波动的增长可能会驱动一系列现象,包括形成新的状态,例如非常规的超导性。实验上,波动的增长受到限制,并且随着温度降低,过渡变得不连续。可以理解这是由于总是对自由能进行非解析校正而产生的(1)。在最近的理论中(2,3),在基态旁边自洽地考虑了激发光谱的变化。该分析表明,过渡到新状态可能是替代结果。由于激发光谱(“紊乱”)对于促进新的“秩序”至关重要,因此将这种机制称为“无序秩序”。在这里,我们报道了在顺磁性和铁磁性之间的边界处发现了PrPtAl中与复杂螺旋一致的调制阶数,从而首次明确地实验了这种状态。

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