量子点
半径
结合能
物理
谐振子
振荡器强度
有效质量(弹簧-质量系统)
原子物理学
蓝移
薛定谔方程
杂质
吸收(声学)
量子力学
分子物理学
光学
光致发光
谱线
计算机安全
计算机科学
标识
DOI:10.1117/1.jnp.14.016013
摘要
The binding energy, oscillator strengths, and absorption coefficients (ACs) for double ring-shaped quantum dots (DRSQDs) are theoretically investigated within the framework of effective mass approximation. The Schrödinger equation is solved by a variational method in order to compute the energy levels of a hydrogenic impurity in a gallium aresenide DRSQD. Obtained results have revealed the dependence of the binding energy on the dot radius and the potential parameters B and C. The energy values in the absence and presence of impurity are compared with the literature for spherical harmonic oscillator. The binding energy decreases as the quantum dot radius and the potential parameters increase. Also, it is found that the oscillator strengths and the linear and nonlinear optical ACs are quite sensitive to the potential parameters. The peaks of AC exhibit blueshift with B and C increasing.
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