Nevzorov Alexander A, Marek Antonin, Milikisiyants Sergey, Smirnov Alex I
Department of Chemistry, North Carolina State University, 2620 Yarbrough Drive, Raleigh, NC 27695-8204, United States.
Department of Chemistry, North Carolina State University, 2620 Yarbrough Drive, Raleigh, NC 27695-8204, United States.
J Magn Reson. 2021 Feb;323:106893. doi: 10.1016/j.jmr.2020.106893. Epub 2020 Dec 13.
Polarization of nuclear spins via Dynamic Nuclear Polarization (DNP) relies on generating sufficiently high mm-wave B fields over the sample, which could be achieved by developing suitable resonance structures. Recently, we have introduced one-dimensional photonic band gap (1D PBG) resonators for DNP and reported on prototype devices operating at ca. 200 GHz electron resonance frequency. Here we systematically compare the performance of five (5) PBG resonators constructed from various alternating dielectric layers by monitoring the DNP effect on natural-abundance C spins in synthetic diamond microparticles embedded into a commercial polyester-based lapping film of just 3 mil (76 μm) thickness. An odd-numbered configuration of dielectric layers for 1D PBG resonator was introduced to achieve further B enhancements. Among the PBG configurations tested, combinations of high-ε perovskite LiTaO together with AlN as well as AlN with optical quartz wafers have resulted in ca. 40 to over 50- fold gains in the average mm-wave power over the sample vs. the mirror-only configuration. The results are rationalized in terms of the electromagnetic energy distribution inside the resonators obtained analytically and from COMSOL simulations. It was found that average of B over the sample strongly depends on the arrangement of the dielectric layers that are the closest to the sample, which favors odd-numbered PBG resonator configurations for their use in DNP.
通过动态核极化(DNP)实现核自旋极化依赖于在样品上产生足够高的毫米波磁场,这可以通过开发合适的共振结构来实现。最近,我们引入了用于DNP的一维光子带隙(1D PBG)谐振器,并报道了在约200GHz电子共振频率下运行的原型设备。在这里,我们通过监测DNP对嵌入仅3密耳(76μm)厚的商用聚酯基研磨膜中的合成金刚石微粒中天然丰度碳自旋的影响,系统地比较了由各种交替介电层构成的五(5)种PBG谐振器的性能。引入了用于1D PBG谐振器的奇数配置的介电层,以实现进一步的磁场增强。在所测试的PBG配置中,高介电常数钙钛矿LiTaO与AlN以及AlN与光学石英晶片的组合,相对于仅使用镜子的配置,使样品上的平均毫米波功率提高了约40至50倍以上。根据通过解析和COMSOL模拟获得的谐振器内部电磁能量分布,对结果进行了合理化解释。发现样品上的平均磁场强烈依赖于最靠近样品的介电层的排列,这有利于奇数配置的PBG谐振器用于DNP。