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Dynamic nuclear polarization of diamond. II. Nuclear orientation via electron spin-locking

机译:钻石的动态核极化。二。通过电子自旋锁进行核取向

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The polarization of C-13 nuclei by means of nuclear orientation via electron spin-locking (Hartmann-Hahn cross-polarization between paramagnetic electrons and C-13 nuclei) in a suite of natural diamonds has been investigated at 2.4 GHz and 9.6 GHz. The C-13 polarization rate has been found to be independent of the microwave frequency, in agreement with theory. It is shown that since T-1 rho(e) much less than T-1(e) for diamond, the effective polarization rate of C-13 nuclei is relatively low. At low paramagnetic impurities (C-e < 5 ppm) C-13 nuclei in diamond are polarized faster by employing continuous wave microwave radiation to drive the forbidden transitions of the C-13-electron spin system, the so-called solid effect. (C) 1998 American Institute of Physics. [S0021-9606(98)02633-6]. [References: 17]
机译:在2.4 GHz和9.6 GHz频率下,已经研究了通过电子自旋锁(顺磁性电子与C-13核之间的Hartmann-Hahn交叉极化)的核取向对C-13核的极化。与理论一致,发现C-13极化率与微波频率无关。结果表明,由于钻石的T-1 rho(e)远小于T-1(e),因此C-13原子核的有效极化率相对较低。在低顺磁性杂质(C-e <5 ppm)下,钻石中的C-13核通过连续波微波辐射驱动C-13电子自旋系统的禁化跃迁而更快地极化,即所谓的固体效应。 (C)1998美国物理研究所。 [S0021-9606(98)02633-6]。 [参考:17]

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