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Dynamical nuclear polarization by means of shallow donors in ZnO quantum dots

机译:ZnO量子点浅供体的动态核极化

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The almost complete dynamic nuclear polarization (DNP) of nuclear spins has been demonstrated can be achieved in ZnO and AgCl single crystals by saturating the EPR transition of the shallow donor (SD) present in this crystals with using high-frequency (275 and 95 GHz) at low temperatures. DNP effects have also been observed in ZnO quantum dots (QD's) where polarization of ~(67)Zn nuclear spins in ZnO core and of ~1H nuclear spins in the Zn(OH)_2 capping layer have been obtained by saturating the EPR transition of the SD present in the ZnO QD's. DNP manifests itself via a shift of the EPR lines of SD in bulk ZnO and AgCl crystals and the creation of a hole and an antihole in the EPR absorption line of the SD in QD's. The enhancement of the nuclear polarization opens the possibility to study semiconductor nanostructures with NMR techniques.
机译:已经证明了核旋转的几乎完全的动态核偏振(DNP)通过使用高频(275和95GHz )在低温下。在ZnO量子点(QD)中也已经观察到DNP效应,其中ZnO核中〜(67)Zn核旋转的偏振和Zn(OH)_2覆盖层中的〜1H核旋转的偏振,通过饱和EPR转换SD在Zno QD中存在。 DNP通过散装ZnO和AgCl晶体的EPR系列SD的偏移,在QD的SD的EPR吸收线中的孔和抗孔的偏移表现出来。核极化的增强打开了使用NMR技术研究半导体纳米结构的可能性。

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