Aprilis G, Strohm C, Kupenko I, Linhardt S, Laskin A, Vasiukov D M, Cerantola V, Koemets E G, McCammon C, Kurnosov A, Chumakov A I, Rüffer R, Dubrovinskaia N, Dubrovinsky L
Bayerisches Geoinstitut, Universität Bayreuth, D-95440 Bayreuth, Germany.
Photon Science, DESY, D-22607 Hamburg, Germany.
Rev Sci Instrum. 2017 Aug;88(8):084501. doi: 10.1063/1.4998985.
A portable double-sided pulsed laser heating system for diamond anvil cells has been developed that is able to stably produce laser pulses as short as a few microseconds with repetition frequencies up to 100 kHz. In situ temperature determination is possible by collecting and fitting the thermal radiation spectrum for a specific wavelength range (particularly, between 650 nm and 850 nm) to the Planck radiation function. Surface temperature information can also be time-resolved by using a gated detector that is synchronized with the laser pulse modulation and space-resolved with the implementation of a multi-point thermal radiation collection technique. The system can be easily coupled with equipment at synchrotron facilities, particularly for nuclear resonance spectroscopy experiments. Examples of applications include investigations of high-pressure high-temperature behavior of iron oxides, both in house and at the European Synchrotron Radiation Facility using the synchrotron Mössbauer source and nuclear inelastic scattering.
已开发出一种用于金刚石对顶砧的便携式双面脉冲激光加热系统,该系统能够稳定地产生短至几微秒的激光脉冲,重复频率高达100kHz。通过收集特定波长范围(特别是650nm至850nm之间)的热辐射光谱并将其拟合到普朗克辐射函数,可以进行原位温度测定。还可以通过使用与激光脉冲调制同步的门控探测器来对表面温度信息进行时间分辨,并通过实施多点热辐射收集技术来进行空间分辨。该系统可以很容易地与同步加速器设施的设备耦合,特别是用于核磁共振光谱实验。应用实例包括在内部以及在欧洲同步辐射设施中使用同步加速器穆斯堡尔源和核非弹性散射对氧化铁的高压高温行为进行研究。