Shinoda Keiji, Noguchi Naoki
Department of Geosciences, Faculty of Science, Osaka City University, Sugimoto, Sumiyoshi, Osaka 558-8585, Japan.
Rev Sci Instrum. 2008 Jan;79(1):015101. doi: 10.1063/1.2827138.
A new external heating configuration is presented for high-temperature diamond anvil cell instruments. The supporting rockers are thermally excited by induction from an externally mounted copper coil passing a 30 kHz alternating current. The inductive heating configuration therefore avoids the use of breakable wires, yet is capable of cell temperatures of 1100 K or higher. The diamond anvil cell has no resistive heaters, but uses a single-turn induction coil for elevating the temperature. The induction coil is placed near the diamonds and directly heats the tungsten carbide rockers that support the diamond. The temperature in the cell is determined from a temperature-power curve calibrated by the ratio between the intensities of the Stokes and anti-Stokes Raman lines of silicon. The high-pressure transformation of quartz to coesite is successfully observed by micro-Raman spectroscopy using this apparatus. The induction heating diamond anvil cell is thus a useful alternative to resistively heated diamond anvil cells.
本文介绍了一种用于高温金刚石砧室仪器的新型外部加热配置。支撑摇臂通过外部安装的铜线圈感应30 kHz交流电而被热激发。因此,感应加热配置避免了使用易断裂的电线,并且能够使样品室温度达到1100 K或更高。金刚石砧室没有电阻加热器,而是使用单匝感应线圈来升高温度。感应线圈放置在金刚石附近,直接加热支撑金刚石的碳化钨摇臂。样品室内的温度由通过硅的斯托克斯和反斯托克斯拉曼线强度之比校准的温度-功率曲线确定。利用该装置通过显微拉曼光谱成功观察到了石英向柯石英的高压转变。因此,感应加热金刚石砧室是电阻加热金刚石砧室的一种有用替代方案。