Hu Yue, Menyuk Curtis R, Hutchinson Meredith N, Urick Vincent J, Williams Keith J
Opt Lett. 2017 Mar 1;42(5):919-922. doi: 10.1364/OL.42.000919.
We use a drift-diffusion model to study frequency dependent harmonic powers in a modified uni-traveling carrier (MUTC) phododetector. The model includes external loading, incomplete ionization, the Franz-Keldysh effect, and history-dependent impact ionization. In three-tone measurements, the bias voltage at which a null occurs (bias null) in the second-order intermodulation distortion (IMD2) is different for the sum frequency and difference frequency. We obtained agreement with the experimental results. The bias null that appears in the IMD2 is due to the Franz-Keldysh effect. The bias voltage at which the bias null is located depends on the electric field in the intrinsic region, and the difference in the location of the bias null for the sum frequency and difference frequency is due to the displacement current in the intrinsic region. When the frequency is large, the displacement current is large and has a large effect on the harmonic powers. We also found that the bias null depends on the recombination rate in the p-absorption region because the electric field decreases in the intrinsic region when the recombination rate in the p-region decreases.
我们使用漂移扩散模型来研究改进型单载流子传输(MUTC)光电探测器中与频率相关的谐波功率。该模型包括外部负载、不完全电离、弗朗兹-凯尔迪什效应以及与历史相关的碰撞电离。在三音测量中,二阶互调失真(IMD2)中出现零值(偏置零值)时的偏置电压对于和频与差频是不同的。我们得到了与实验结果一致的结果。IMD2中出现的偏置零值是由于弗朗兹-凯尔迪什效应。偏置零值所在的偏置电压取决于本征区中的电场,而和频与差频的偏置零值位置差异是由于本征区中的位移电流。当频率较大时,位移电流较大,对谐波功率有较大影响。我们还发现偏置零值取决于p吸收区中的复合率,因为当p区中的复合率降低时,本征区中的电场会减小。