Méndez A S J, Marquardt H, Husband R J, Schwark I, Mainberger J, Glazyrin K, Kurnosov A, Otzen C, Satta N, Bednarcik J, Liermann H-P
Photon Sciences, Deutsches Elektronen-Synchrotron (DESY), 22607 Hamburg, Germany.
Department of Earth Sciences, University of Oxford, OX1 3AN Oxford, United Kingdom.
Rev Sci Instrum. 2020 Jul 1;91(7):073906. doi: 10.1063/5.0007557.
A resistively-heated dynamic diamond anvil cell (RHdDAC) setup is presented. The setup enables the dynamic compression of samples at high temperatures by employing a piezoelectric actuator for pressure control and internal heaters for high temperature. The RHdDAC facilitates the precise control of compression rates and was tested in compression experiments at temperatures up to 1400 K and pressures of ∼130 GPa. The mechanical stability of metallic glass gaskets composed of a FeSiB alloy was examined under simultaneous high-pressure/high-temperature conditions. High-temperature dynamic compression experiments on HO ice and (Mg, Fe)O ferropericlase were performed in combination with time-resolved x-ray diffraction measurements to characterize crystal structures and compression behaviors. The employment of high brilliance synchrotron radiation combined with two fast GaAs LAMBDA detectors available at the Extreme Conditions Beamline (P02.2) at PETRA III (DESY) facilitates the collection of data with excellent pressure resolution. The pressure-temperature conditions achievable with the RHdDAC combined with its ability to cover a wide range of compression rates and perform tailored compression paths offers perspectives for a variety of future experiments under extreme conditions.
介绍了一种电阻加热动态金刚石对顶砧装置(RHdDAC)。该装置通过使用压电致动器进行压力控制和内部加热器实现高温,从而能够在高温下对样品进行动态压缩。RHdDAC有助于精确控制压缩速率,并在高达1400 K的温度和~130 GPa的压力下进行的压缩实验中得到了测试。研究了由FeSiB合金组成的金属玻璃垫片在高压/高温同时作用下的机械稳定性。结合时间分辨X射线衍射测量,对HO冰和(Mg,Fe)O铁方镁石进行了高温动态压缩实验,以表征晶体结构和压缩行为。利用高亮度同步辐射光,结合PETRA III(DESY)的极端条件光束线(P02.2)上可用的两个快速GaAs LAMBDA探测器,有助于以优异的压力分辨率收集数据。RHdDAC可实现的压力-温度条件,及其覆盖广泛压缩速率范围和执行定制压缩路径的能力,为未来各种极端条件下的实验提供了前景。