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首页> 外文期刊>Physica status solidi, B. Basic research >Multiphoton excitation of disc shaped quantum dot in presence of laser (THz) and magnetic field for bioimaging
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Multiphoton excitation of disc shaped quantum dot in presence of laser (THz) and magnetic field for bioimaging

机译:圆盘形量子点在激光(THz)和磁场存在下的多光子激发用于生物成像

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摘要

Recently, multiphoton processes in nanostructures have attracted much attention for their promising applications,especially in growing field of bioimaging. Here we investigate the optical response of quantum disc (QD) in the presence of laser and a static magnetic field. Floquet theory is employed to solve the equation of motion for laser driven intraband transitions between the states of the conduction band. Several interesting features namely dynamic stark shift, power broadening,and hole burning on excited levels degeneracy breaking are observed with variation of electric and magnetic field strengths. Enhancement and power broadening observed for excited states probabilities with increase of external fields are directly linked to the emission spectra of QD and will be useful for making future bioimaging devices.
机译:近来,纳米结构中的多光子过程因其有希望的应用而引起了人们的广泛关注,特别是在生物成像领域。在这里,我们研究在存在激光和静磁场的情况下量子盘(QD)的光学响应。浮球理论用于求解导带状态之间激光驱动的带内跃迁的运动方程。随着电场和磁场强度的变化,观察到了几个有趣的特征,即动态的斯塔克位移,功率展宽以及激发水平上的空穴燃烧简并性破坏。随着外部场的增加,激发态概率的增强和功率展宽与量子点的发射光谱直接相关,将对制造未来的生物成像设备有用。

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