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Ultra-High Resolution Neutron Spectroscopy of Low-Energy Spin Dynamics in UGe$_2$

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arxiv 1801.10278 v2 pith:SCJTMBIU submitted 2018-01-31 cond-mat.str-el

classification cond-mat.str-el
keywords spinfluctuationselectronslengthlow-energymiezeneutronquantum
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Studying the prototypical ferromagnetic superconductor UGe$_2$ we demonstrate the potential of the Modulated IntEnsity by Zero Effort (MIEZE) technique---a novel neutron spectroscopy method with ultra-high energy resolution of at least 1~$\mu$eV---for the study of quantum matter. We reveal purely longitudinal spin fluctuations in UGe$_2$ with a dual nature arising from $5f$ electrons that are hybridized with the conduction electrons. Local spin fluctuations are perfectly described by the Ising universality class in three dimensions, whereas itinerant spin fluctuations occur over length scales comparable to the superconducting coherence length, showing that MIEZE is able to spectroscopically disentangle the complex low-energy behavior characteristic of quantum materials.

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