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Solid para-hydrogen as the paradigmatic quantum crystal: Three observables probed by ultrahigh-resolution neutron spectroscopy

机译:固态对氢为范式量子晶体:超高分辨率中子光谱仪探测的三个观测点

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摘要

Quantum crystals are characterized by zero-point-energy motions large enough to explore the details of the interaction potential beyond the harmonic approximation even at zero temperature. By making recourse to ultrahigh-resolution neutron spectroscopy, we have probed simultaneously three observables sensitive to anharmonic effects in solid para-H 2 over a wide temperature range, namely, Bragg scattering, molecular root-mean-square displacements, and the spectral linewidth of the J=0→ 1 rotational transition which, on average, amounts to a half-width at half-maximum of 1.8±0.2 οeV. These three quantities show no measurable variation with temperature, thus signaling the existence of a fully expanded crystal across the entire solid phase. Our results provide unambiguous experimental evidence for the intrinsic quantum character of this fundamental molecular solid. © 2012 American Physical Society.
机译:量子晶体的特征在于零点能量运动足够大,以至于即使在零温度下,也能探索超出谐波近似的相互作用势的细节。通过利用超高分辨率中子光谱学,我们同时探测了在较宽的温度范围内对固体对H 2中的非谐效应敏感的三个观测值,即布拉格散射,分子均方根位移和谱线宽度。 J = 0 1 1旋转过渡,平均而言,相当于最大宽度的一半,最大为1.8±0.2μV。这三个量没有显示出随温度的可测量变化,因此预示着整个固相中存在完全膨胀的晶体。我们的结果为这种基本分子固体的固有量子特征提供了明确的实验证据。 ©2012美国物理学会。

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