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Low multiplication noise thin Al0.6Ga0.4As avalanche photodiodes ud

机译:低倍增噪声薄al0.6Ga0.4as雪崩光电二极管 ud

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摘要

Avalanche multiplication and excess noise were measured on a series of Al0.6Ga0.4As p+in+ and n+ip+ diodes, with avalanche region thickness, w ranging from 0.026 μm to 0.85 μm. The results show that the ionization coefficient for electrons is slightly higher than for holes in thick, bulk material. At fixed multiplication values the excess noise factor was found to decrease with decreasing w, irrespective of injected carrier type. Owing to the wide Al0.6Ga0.4As bandgap extremely thin devices can sustain very high electric fields, giving rise to very low excess noise factors, of around F~3.3 at a multiplication factor of M~15.5 in the structure with w=0.026 μm. This is the lowest reported excess noise at this value of multiplication for devices grown on GaAs substrates. Recursion equation modeling, using both a hard threshold dead space model and one which incorporates the detailed history of the ionizing carriers, is used to model the nonlocal nature of impact ionization giving rise to the reduction in excess noise with decreasing w. Although the hard threshold dead space model could reproduce qualitatively the experimental results, better agreement was obtained from the history-dependent model
机译:在一系列Al0.6Ga0.4As p + in +和n + ip +二极管上测量了雪崩倍增和过量噪声,雪崩区的厚度w在0.026μm至0.85μm的范围内。结果表明,在厚的块状材料中,电子的电离系数略高于空穴的电离系数。在固定的乘数值下,发现多余的噪声因子随w的减小而减小,而与注入的载波类型无关。由于宽的Al0.6Ga0.4As带隙,极薄的器件可以维持非常高的电场,从而在w = 0.026μm的结构中以M〜15.5的倍增因数产生非常低的F〜3.3的过大噪声系数。 。对于在GaAs衬底上生长的器件,在此倍增值下,这是最低的报告过剩噪声。递归方程模型使用硬阈值死区模型和结合电离载体详细历史的模型进行建模,该模型用于模拟碰撞电离的非局部性质,从而随着w的减小而减少了多余的噪声。尽管硬阈值死区模型可以定性地再现实验结果,但是从历史依赖模型中可以得到更好的一致性

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