Sette F, Ruocco G, Cunsolo A, Masciovecchio C, Monaco G, Verbeni R
European Synchrotron Radiation Facility, BP 220, F-38043 Grenoble Cedex, France.
Phys Rev Lett. 2000 May 1;84(18):4136-9. doi: 10.1103/PhysRevLett.84.4136.
The dynamics structure factor S(Q,E) of liquid ammonia l-NH3 at T = 200 K and at its vapor pressure has been measured by inelastic x-ray scattering (IXS) in the 1-15 nm(-1) momentum transfer ( Q) range. Contrary to previous IXS studies on other associated liquids and glasses, in l-NH3 a large inelastic signal is observed up to Q = 15 nm(-1). This, enabling S(Q,E) measurements as a function of Q at constant E transfer, allows us to demonstrate experimentally the transition from a propagating dynamics regime, where the acoustic excitation energy linearly disperses with Q, to a high-Q regime, where it is no longer possible to observe a dominant excitation in the S(Q,E).
在200K及其蒸气压下,通过非弹性X射线散射(IXS)在1-15nm⁻¹的动量转移(Q)范围内测量了液氨l-NH₃的动力学结构因子S(Q,E)。与之前对其他缔合液体和玻璃的IXS研究相反,在l-NH₃中,在Q = 15nm⁻¹之前观察到了较大的非弹性信号。这使得能够在恒定能量转移下测量S(Q,E)作为Q的函数,从而使我们能够通过实验证明从传播动力学区域(其中声激发能量随Q线性色散)到高Q区域(在该区域中不再可能在S(Q,E)中观察到主导激发)的转变。