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Electron paramagnetic resonance and photo-electron paramagnetic resonance investigation on the recharging of the substitutional nitrogen acceptor in ZnO

机译:ZnO中置换氮受体再充电的电子顺磁共振和光电子顺磁共振研究

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摘要

We investigated the substitutional nitrogen center in ZnO single crystals by electron paramagnetic resonance (EPR) and photo-EPR spectroscopy. Aside the three principle hyperfine lines due to the interaction of the N0 (2p5) electron spin with the nitrogen nucleus (I=1, natural abundance 99.6%), we identify additional satellite lines which arise from delta mS=±1 and delta mI=±1, ±2 transitions becoming allowed due to quadrupole interaction. The quadrupole coupling constant e2qQ/h is determined to -5.9MHz with an asymmetry parameter of eta=0.05. These values are somewhat different from those obtained for the nitrogen center in ZnO powders, but are closer to the theoretical calculations of Gallino et al. We further carefully investigated the photon induced recharging of the N centers. We determine the energy hu required for the process NO-+hu -> NO0+ecb- to 2.1±0.05eV, the dependence of the EPR signal intensity on the illumination time shows a mono-exponential behavior which gives evidence that a direct ionization process is monitored.
机译:我们通过电子顺磁共振(EPR)和光EPR光谱研究了ZnO单晶中的取代氮中心。除了由于N0(2p5)电子自旋与氮核相互作用(I = 1,自然丰度99.6%)而产生的三个主要超细线外,我们还确定了由增量mS =±1和增量mI =引起的其他卫星线。由于四极相互作用,允许±1,±2跃迁。将四极耦合常数e2qQ / h确定为-5.9MHz,不对称参数eta = 0.05。这些值与ZnO粉末中氮中心获得的值有些不同,但更接近Gallino等人的理论计算。我们进一步仔细研究了N中心的光子诱导的充电。我们确定过程NO- + hu-> NO0 + ecb-所需的能量hu为2.1±0.05eV,EPR信号强度对照明时间的依赖性显示出单指数行为,这表明直接电离过程被监视。

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