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A generalized Stark effect electromodulation model for extracting excitonic properties in organic semiconductors

机译:一种用于在有机半导体中提取兴趣性质的广义凝固效应电拍电浆液模型

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Electromodulation?(EM) spectroscopy, a powerful technique to monitor the changes in polarizability p and dipole moment u of materials upon photo-excitation, can bring direct insight into the excitonic properties of materials. However, extracting Δp and Δu from the electromodulation spectrum relies on fitting with optical absorption of the materials where optical effect in different device geometries might introduce large variation in the extracted values. Here, we demonstrate a systematic electromodulation study with various fitting approaches in both commonly adopted reflection and transmission device architectures. Strikingly, we have found that the previously ascribed continuum state threshold from the deviation between the measured and fitting results is questionable. Such deviation is found to be caused by the overlooked optical interference and electrorefraction effect. A generalized electromodulation model is proposed to incorporate the two effects, and the extracted Δp and Δu have excellent consistency in both reflection and transmission modes in all organic film thicknesses.
机译:电电常规?(EM)光谱,一种强大的技术,用于监测极化性P和偶极矩U的材料在照片激励时,可以直接深入了解材料的兴趣性质。然而,从电常规光谱中提取ΔP和ΔU依赖于拟合具有光学吸收的材料,其中不同装置几何形状中的光学效应可能会引入提取值的大变化。这里,我们展示了具有常用反射和传输装置架构的各种配件方法的系统电常规研究。令人惊讶的是,我们发现从测量和拟合结果之间的偏差之间的先前刻录的连续阈值是值得怀疑的。发现这种偏差是由忽略的光学干扰和电渗透效应引起的。提出了一种泛化电浆液模型来包含两种效应,提取的ΔP和ΔU在所有有机膜厚度中的反射和传输模式中具有优异的一致性。

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