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Quantum oscillations of nitrogen atoms in uranium nitride

机译:氮化铀中氮原子的量子振荡

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摘要

The vibrational excitations of crystalline solids corresponding to acoustic or optic one-phonon modes appear as sharp features in measurements such as neutron spectroscopy. In contrast, many-phonon excitations generally produce a complicated, weak and featureless response. Here we present time-of-flight neutron scattering measurements for the binary solid uranium nitride, showing well-defined, equally spaced, high-energy vibrational modes in addition to the usual phonons. The spectrum is that of a single atom, isotropic quantum harmonic oscillator and characterizes independent motions of light nitrogen atoms, each found in an octahedral cage of heavy uranium atoms. This is an unexpected and beautiful experimental realization of one of the fundamental, exactly solvable problems in quantum mechanics. There are also practical implications, as the oscillator modes must be accounted for in the design of generation IV nuclear reactors that plan to use uranium nitride as a fuel.
机译:对应于声学或光学单声子模式的结晶固体的振动激发在诸如中子光谱学的测量中表现为鲜明的特征。相反,许多声子激发通常会产生复杂,微弱和无特征的响应。在这里,我们介绍了二元固体氮化铀的飞行时间中子散射测量结果,除了常见的声子以外,还显示了定义明确,等距的高能振动模式。该光谱是单原子的各向同性量子谐波振荡器的光谱,其特征是轻氮原子的独立运动,每个原子都存在于重铀原子的八面体笼中。这是量子力学中一个基本的,可以完全解决的问题之一,出乎意料且美观。还存在实际意义,因为在计划使用氮化铀作为燃料的第四代核反应堆的设计中必须考虑振荡器模式。

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