Optical characterization of aluminum doped Cadmium selenide thin film irradiated by IR-laser

Alaa J. Mohammed, Bahaa Jawad Alwan
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Abstract

The optical properties of a cadmium selenide (CdSe) film doped with aluminum (Al) at a rate of (3%) have been studied. It was deposited on glass substrates at 250 K with a thickness of 0.15 µm and a deposition rate of 2± 0.1 m.sec-1 using a thermal evaporation technique to create the compound. The optical characteristics of the produced film were investigated after being subjected to irradiation by 50 mW, 1064 nm IR laser for 15 minutes at a distance of 0.5 m. Through monitoring the absorbance and transmission spectra of prepared thin film across the wavelength range (190-1100 nm), the optical energy gap value for the permitted direct electronic transitions was determined, and the absorption and reflectivity coefficients were computed and investigated. The optical experiments included computing the optical constants, and result explained that the optical energy gap decreased from (1.76 eV) to (1.64 eV) following irradiation (extinction coefficient, refractive index, and absorption coefficient).
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红外激光辐照铝掺杂硒化镉薄膜的光学特性
研究了掺铝量为(3%)的硒化镉(CdSe)薄膜的光学性质。采用热蒸发技术,在250 K温度下将其沉积在玻璃基板上,厚度为0.15µm,沉积速率为2±0.1 m.s s -1。用50mw, 1064nm的红外激光器在0.5 m的距离上辐照15min后,研究了所制备薄膜的光学特性。通过对制备薄膜在190 ~ 1100nm波长范围内的吸光度和透射光谱的监测,确定了允许的直接电子跃迁的光能隙值,计算并研究了吸收系数和反射率系数。光学实验包括计算光学常数,结果表明辐照后的光能隙(消光系数、折射率和吸收系数)从(1.76 eV)减小到(1.64 eV)。
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