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Mechanisms of the paraelectric to ferroelectric phase transition in $RbH_{2}PO_{4}$ probed by purely resonant x-ray diffraction

机译:通过纯共振X射线衍射探测$ RbH_ {2} PO_ {4} $中顺电向铁电的相变机理

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摘要

Resonant x-ray diffraction was used to study the proton jumps in hydrogen-bonded rubidium dihydrogen phosphate (RDP) crystals. In the paraelectric RDP phase, hydrogen is delocalized between two crystallographically equivalent positions. At lower temperatures, this symmetry can be broken, which defines the processes that lead to the para- to ferroelectric phase transition. We have measured the energy spectra of the forbidden reflections 006 and 550 at incident radiation energies close to the Rb K edge in a wide temperature range, down to the temperature of the ferroelectric phase transition. In the paraelectric phase, we observed a growth of integrated intensity for both forbidden reflections with temperature. This behavior is opposite to conventional nonresonant Bragg reflections, where intensity decreases in accordance with the Debye-Waller factor. The developed theoretical model explains this effect with the thermal motion induced (TMI) scattering mechanism and also confirms the adiabatic approximation stating that electrons instantly follow the nuclei movements. In the 550 energy spectra, we have observed an additional contribution to the resonant structure factor, which could be associated with the presence of transient Slater-type proton configurations (PC) in the half-filled hydrogen position.
机译:共振X射线衍射用于研究氢键合磷酸二氢rub(RDP)晶体中的质子跃迁。在顺电RDP相中,氢在两个晶体学等效位置之间离域。在较低的温度下,这种对称性可能会破裂,从而定义了导致顺电向铁电相变的过程。我们已经测量了在很宽的温度范围内(低至铁电相变温度)入射光能量接近Rb K边缘时的禁反射006和550的能谱。在顺电相中,我们观察到两种禁止反射的积分强度随温度的升高而增加。此行为与常规的非共振布拉格反射相反,后者的强度根据Debye-Waller因子而降低。开发的理论模型通过热运动诱导(TMI)散射机理解释了这种效应,并证实了绝热近似,表明电子立即跟随原子核运动。在550能谱中,我们观察到了对共振结构因子的额外贡献,这可能与半填充氢位置中存在瞬态Slater型质子构型(PC)有关。

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