Meng Y, Shen G, Mao H K
HPCAT, Advanced Photon Source, Argonne National Laboratory, Argonne, IL 60439, USA. Geophysical Laboratory, Carnegie Institution of Washington, Washington DC 20015, USA.
J Phys Condens Matter. 2006 Jun 28;18(25):S1097-103. doi: 10.1088/0953-8984/18/25/S17. Epub 2006 Jun 9.
An overview of a YLF:Nd laser heating system at the undulator x-ray diffraction station (16ID-B) of the high-pressure collaborative access team (HPCAT) of the Advanced Photon Source is presented. Based on the double-sided laser heating technique, the system is designed with considerable effort on the mechanical and optical stabilities, features for user-friendly operation, and the capability of accommodating diamond anvil cells of various heights up to 68 mm. This system has been used for x-ray diffraction studies of a wide range of materials to over 150 GPa and above 3000 K. Applying the laser heating technique to radial x-ray diffraction studies at simultaneous high-pressure and high-temperature (PT) conditions requires heating to be conducted at variable angles relative to the x-ray direction. A rotation laser heating design is discussed.
介绍了先进光子源高压协作访问团队(HPCAT)的波荡器X射线衍射站(16ID-B)的YLF:Nd激光加热系统。基于双面激光加热技术,该系统在机械和光学稳定性方面投入了大量精力进行设计,具有操作方便的特点,并且能够容纳高度达68毫米的各种金刚石对顶砧。该系统已用于对多种材料进行高达150 GPa和3000 K以上的X射线衍射研究。在同时处于高压和高温(PT)条件下将激光加热技术应用于径向X射线衍射研究时,需要相对于X射线方向以可变角度进行加热。本文讨论了一种旋转激光加热设计。