Sakurai T, Taketani A, Tomita T, Okubo S, Ohta H, Uwatoko Y
Center for Supports to Research and Education Activities, Kobe University, Nada, Kobe 657-8501, Japan.
Rev Sci Instrum. 2007 Jun;78(6):065107. doi: 10.1063/1.2746818.
The electron spin resonance (ESR) system which covers the magnetic field region up to 16 T, the quasicontinuous frequency region from 60 to 700 GHz, the temperature region from 1.8 to 4.2 K, and the hydrostatic pressure region up to 1.1 GPa has been developed. This is the first pulsed high-field and multifrequency ESR system with the pressure region over 1 GPa as far as we know. Transmission ESR spectra under hydrostatic pressure can be obtained by combining a piston-cylinder-type pressure cell and the pulsed magnetic field ESR apparatus. The pressure cell consists of a NiCrAl cylinder and sapphire or zirconia inner parts. The use of sapphire or zirconia as inner parts enables us to observe ESR under pressure because these inner parts have high transmittance for the electromagnetic wave with millimeter and submillimeter wavelengths. We have successfully applied this system for the pressure dependence measurements of an isolated spin system NiSnCl(6)6H(2)O up to 1.1 GPa. It was found that the single ion anisotropy parameter D of this compound strongly depends on pressure. The parameter D is approximately proportional to the pressure up to 0.75 GPa, and the relation between D and the pressure can be used for the pressure calibration of this high-field and high-pressure ESR system.
已开发出一种电子自旋共振(ESR)系统,其覆盖高达16 T的磁场区域、60至700 GHz的准连续频率区域、1.8至4.2 K的温度区域以及高达1.1 GPa的静水压力区域。据我们所知,这是首个压力区域超过1 GPa的脉冲高场多频ESR系统。通过将活塞 - 圆筒式压力传感器与脉冲磁场ESR装置相结合,可获得静水压力下的透射ESR光谱。该压力传感器由一个镍铬铝合金圆筒以及蓝宝石或氧化锆内部部件组成。使用蓝宝石或氧化锆作为内部部件使我们能够在压力下观测ESR,因为这些内部部件对毫米和亚毫米波长的电磁波具有高透射率。我们已成功将该系统应用于对孤立自旋系统NiSnCl(6)6H(2)O高达1.1 GPa的压力依赖性测量。结果发现,该化合物的单离子各向异性参数D强烈依赖于压力。在高达0.75 GPa时,参数D与压力大致成比例,并且D与压力之间的关系可用于该高场高压ESR系统的压力校准。