论文标题

在量子点 - 腔体系统中,光子数分布的瞬时变化形状由the驱动的激光脉冲驱动

Transiently changing shape of the photon number distribution in a quantum-dot--cavity system driven by chirped laser pulses

论文作者

Cosacchi, M., Seidelmann, T., Ungar, F., Cygorek, M., Vagov, A., Axt, V. M.

论文摘要

我们已经在半导体量子点 - 微腔内系统中模拟了光子数分布的时间演变,该系统由the鼠激光脉冲驱动,并与未固定的结果进行比较。当声子与DOT的相互作用被忽略(因此与原子腔系统的极限相对应)时,chired脉冲会生成光子数分布,这些分布在随着时间的流逝中会大大改变其形状。声子对光子统计数据产生了强烈的定性影响。声子吸收和发射之间的不对称性破坏了用于正和负chirp的光子分布的对称性。对于负chirps瞬态分布,观察到类似于热的分布,而对于正chirps,光子数分布仍然类似于其无语音词的对应物,但总体形状更平滑。形成鲜明对比的是,发现使用同一脉冲区域的无骨脉冲和持续时间波袋,可以在Jaynes-Cummings梯子上移动,并带有铃铛形状,而钟形很少会随着时间而变化。对于较短的脉冲和较低的驾驶强度,狂犬病样振荡发生在低光子数状态之间。对于所有考虑的激发条件,在特定时间都可以找到亚属统计和超贫血统计的过渡。对于低强度的谐振驱动,mandel参数振荡,大多为负,这表明腔场中的非经典状态。最后,我们表明,曼德尔参数可能会动态接近零,并且光子分布仍然具有两个最大值,因此远非泊松人。

We have simulated the time evolution of the photon number distribution in a semiconductor quantum dot-microcavity system driven by chirped laser pulses and compare with unchirped results. When phonon interactions with the dot are disregarded - thus corresponding to the limit of atomic cavity systems - chirped pulses generate photon number distributions that change their shape drastically in the course of time. Phonons have a strong and qualitative impact on the photon statistics. The asymmetry between phonon absorption and emission destroys the symmetry of the photon distributions obtained for positive and negative chirps. While for negative chirps transient distributions resembling thermal ones are observed, for positive chirps the photon number distribution still resembles its phonon-free counterpart but with overall smoother shapes. In sharp contrast, using unchirped pulses of the same pulse area and duration wave-packets are found that move up and down the Jaynes-Cummings ladder with a bell-shape that changes little in time. For shorter pulses and lower driving strength Rabi-like oscillations occur between low photon number states. For all considered excitation conditions transitions between sub- and super-Poissonian statistics are found at certain times. For resonant driving with low intensity the Mandel parameter oscillates and is mostly negative, which indicates a non-classical state in the cavity field. Finally, we show that it is possible that the Mandel parameter dynamically approaches zero and still the photon distribution exhibits two maxima and thus is far from being a Poissonian.

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