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Dynamics of electron-hole liquid condensation in CVD diamond studied by femtosecond pump and probe spectroscopy

机译:飞秒泵和探针光谱法研究CVD金刚石中电子-空穴液体凝聚的动力学

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We report on the femtosecond pump and probe study of the condensation dynamics of electron-hole liquid in CVD Ha type diamond. The parameters of electron-hole liquid created after carrier excitation by one- and two-photon absorption were determined on the basis of the analysis of spectral shape of time-integrated photoluminescence. The dynamics of condensation of carriers into electron-hole liquid was probed by measuring the time evolution of changes in infrared light absorption. These changes were interpreted in terms of the density dependent carrier scattering time according to the Drude model of free-carrier absorption. Measured condensation times range from 50 to 500 ps depending on the initial carrier density (3×10)~(16)cm~(-3)-5×10~(18)cm~(-3)) and the sample temperature (13-130 K). The measured dynamics was reproduced very well by a rate equation model of electron-hole droplet formation for low photoexcited carrier densities. A ~10 ps delay in initial stage of condensation observed for high carier densities was interpreted in terms of density dependent carrier cooling rate.
机译:我们报告了飞秒泵,并对CVD Ha型金刚石中电子空穴液体的凝结动力学进行了研究。在对时间积分光致发光的光谱形状进行分析的基础上,确定了通过单光子吸收和双光子吸收而激发载流子后产生的电子空穴液体的参数。通过测量红外光吸收变化的时间演变,研究了载流子缩合到电子空穴液体中的动力学。根据自由载流子吸收的Drude模型,根据密度依赖的载流子散射时间来解释这些变化。根据初始载流子密度(3×10)〜(16)cm〜(-3)-5×10〜(18)cm〜(-3))和样品温度(),测得的冷凝时间范围为50到500 ps。 13-130 K)。对于低光激发载流子密度,通过电子空穴液滴形成的速率方程模型可以很好地再现所测得的动力学。对于高载流子密度,在凝结初期观察到了约10 ps的延迟,这是根据密度决定的载流子冷却速率来解释的。

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