Voccio John, Hahn Seungyong, Kim Youngjae, Ling Jiayin, Song Jungbin, Bascuñán Juan, Iwasa Yukikazu
Francis Bitter Magnet Laboratory, Massachusetts Institute of Technology (MIT), Cambridge, MA 02139 USA.
IEEE Trans Appl Supercond. 2014 Jun;24(3). doi: 10.1109/TASC.2013.2285287. Epub 2013 Oct 11.
We are currently working on a program to complete a 1.5-T/75-mm RT (room temperature) bore MAS (magic-angle-spinning) NMR (nuclear magnetic resonance) magnet. The MAS magnet comprises a z-axis 0.866-T solenoid and an x-axis 1.225-T dipole coil. The combination of the fields creates a 1.5-T field pointed at 54.74 degrees (magic angle) from the rotation (z) axis. During the 2nd year of this 3-year Phase I program, both coils have been wound and testing has begun. Some preliminary field mapping has been performed, and the design of the MAS magnet assembly has been completed. During the final year, the magnet assembly will be integrated into the cryogenic structure and tested at ~5.5 K in a solid nitrogen environment. Each coil will be energized separately, and the magnetic field will be mapped accurately. We expect a bare magnet uniformity of 100 ppm over a 10-mm diameter, 20-mm-long cylindrical volume. Then, using the field data, the uniformity will be improved to < 0.1.ppm with a combination of ferroshims and cryoshims. Final field measurement will be performed as the cryostat-magnet system is spun manually at ~0.1 Hz.
我们目前正在开展一个项目,以完成一台1.5T/75mm室温孔径的魔角旋转核磁共振(MAS NMR)磁体。该MAS磁体包括一个z轴0.866T的螺线管和一个x轴1.225T的偶极线圈。这两个磁场的组合产生了一个与旋转(z)轴呈54.74度(魔角)指向的1.5T磁场。在这个为期三年的一期项目的第二年,两个线圈都已绕制完成并开始测试。已经进行了一些初步的磁场测绘,并且MAS磁体组件的设计已经完成。在最后一年,磁体组件将被集成到低温结构中,并在固态氮环境中于约5.5K的温度下进行测试。每个线圈将分别通电,并且将精确测绘磁场。我们预计在一个直径10mm、长20mm的圆柱形体积内,裸磁体的均匀性为100ppm。然后,利用磁场数据,通过铁磁垫片和低温垫片的组合,将均匀性提高到<0.1ppm。最终的磁场测量将在低温恒温器 - 磁体系统以约0.1Hz的频率手动旋转时进行。