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Effects of plasmon resonance on the low frequency noise and optoelectronic properties of Au/Cu codoped ZnO based photodetectors

机译:等离激元共振对Au/Cu共掺杂ZnO基光电探测器低频噪声和光电性能的影响

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摘要

We have investigated the effect of Au nanoparticles on the low frequency noise and current-voltage of Au/Cu doped ZnO nanoparticles (Nps) based photodetectors (PDs). Besides, 1/f noise of Cu doped ZnO is studied with and without Au Nps conditions and varied bias voltages. The Au/Cu codoped ZnO Nps showed much lower 1/f noise and higher normalized photocurrent to the dark current ratio (NPDR) than Cu doped ZnO Nps and undoped ZnO Nps. This enhancement may be attributed to the effect of localized surface Plasmon resonances (LSPR). Furthermore, the noise equivalent power represents the minimum optical power that a photodetector can distinguish from the noise and the detectivity (D*) is an important parameter in evaluating the ability of a photodetector to detect a weak signal. These parameters were determined using low frequency noise measurements. The observed low frequency noise performances could be used for Au/Cu codoped ZnO Nps based UV photodetectors.
机译:研究了Au纳米粒子对Au/Cu掺杂ZnO纳米粒子(Nps)光电探测器(PDs)的低频噪声和电流电压的影响。此外,还研究了在Au Nps条件和不同偏置电压下Cu掺杂ZnO的1/f噪声。与Cu掺杂的ZnO Nps和未掺杂的ZnO Nps相比,Au/Cu共掺杂的ZnO Nps显示出更低的1/f噪声和更高的归一化光电流与暗电流比(NPDR)。这种增强可能归因于局部表面等离子体共振 (LSPR) 的影响。此外,噪声等效功率表示光电探测器能够从噪声中区分出的最小光功率,检测率(D*)是评估光电探测器检测微弱信号能力的重要参数。这些参数是通过低频噪声测量确定的。观测到的低频噪声性能可用于Au/Cu共掺杂ZnO Nps基紫外光电探测器。

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