Sofer S, Sefi O, Strizhevsky E, Aknin H, Collins S P, Nisbet G, Detlefs B, Sahle Ch J, Shwartz S
Physics Department and Institute of Nanotechnology, Bar-Ilan University, 52900, Ramat Gan, Israel.
Diamond Light Source, Harwell Science and Innovation Campus, Didcot, OX11 0DE, UK.
Nat Commun. 2019 Dec 12;10(1):5673. doi: 10.1038/s41467-019-13629-w.
Nonlinear interactions between X-rays and long wavelength radiation can be used as a powerful atomic-scale probe for light-matter interactions and for properties of valence electrons. However, reported X-ray nonlinear effects were small and their observations required tremendous efforts. Here we report the observation of strong nonlinearities in parametric down-conversion (PDC) of X-rays to long wavelength radiation in gallium arsenide and lithium niobate crystals, with efficiencies about 4 orders of magnitude stronger than the efficiencies measured in any material studied before. Furthermore, we show that the efficiency in the ferroelectric phase of strontium barium niobite is two orders of magnitude stronger than in its paraelectric phase. This observation suggests that the lack of inversion symmetry is the origin for the strong observed nonlinearity. Additionally, we demonstrate the ability to use the effect for the investigation of the spectral response of non-centrosymmetric materials at wavelengths ranging from infrared to soft X-rays.
X射线与长波长辐射之间的非线性相互作用可作为一种强大的原子尺度探针,用于研究光与物质的相互作用以及价电子的性质。然而,已报道的X射线非线性效应较小,其观测需要付出巨大努力。在此,我们报告在砷化镓和铌酸锂晶体中观察到X射线参量下转换(PDC)为长波长辐射时的强非线性,其效率比之前研究的任何材料所测得的效率约高4个数量级。此外,我们表明,铌酸锶钡铁电相中的效率比其顺电相中的效率高两个数量级。这一观测结果表明,缺乏反演对称性是所观察到的强非线性的起源。此外,我们展示了利用该效应研究非中心对称材料在从红外到软X射线波长范围内光谱响应的能力。