激子
比克西顿
凝聚态物理
哈密顿量(控制论)
重整化
莫特跃迁
材料科学
电介质
量子阱
带隙
量子点
有效质量(弹簧-质量系统)
物理
光电子学
光学
量子力学
赫巴德模型
激光器
数学优化
超导电性
数学
作者
P. Nithiananthi,G. Vignesh
出处
期刊:Nucleation and Atmospheric Aerosols
日期:2024-01-01
卷期号:2995: 020197-020197
摘要
The effect of confinement potential on Exciton Mott Transition (EMT) has been numerically studied through interband transition energy (IBTE) of excitons confined in QW. The influence of confinement profile is estimated by adding square, parabolic and triangular potentials using variation technique adjoined with effective mass approximation. The effect of confinement profile, barrier height and well width on binding energy and IBTE has been obtained by optimizing the Hamiltonian at ground state by tuning direct exciton (DX) concentration. The screening effects of optically pumped DXs is accounted through Thomas-Fermi dielectric screening. Further, it is found that BE of exciton vanishes at a critical concentration (nc ∼1017cm−3) to demonstrate EMT. However, the onset of the transition is at 1015 cm−3 and completed at 1018 cm−3. The results are observed irrespective of the confinements and other material parameters. A basic bandgap renormalization process in the EMT is observed due to overlapping of charge clouds. It is also confirmed that TF dielectric screening effectively accounts the EMT in nanostructures.
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