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Controllable population dynamics in Landau-quantized graphene

机译:Landau量化石墨烯中可控的种群动态

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In this paper, we carry out a theoretical investigation on the population dynamics of graphene system under continuous-wave (cw) laser and chirped pulse excitation. Results of our numerical simulations reveal that complete population transfer from an initially occupied ground state to the initially unoccupied excited states can be achieved by choosing appropriate values of the chirp rate, the laser field intensity and frequency, as well as other system parameters. Also, we observe coherent Rabi-like population oscillations between the initial ground state and the excited final state. It is induced by the combined effect of cw and chirped-pulse laser fields. These results will contribute to the understanding of carrier-carrier and carrier-phonon interactions in graphene system, and may find applications in graphene-based high-speed electronic and optoelectronic devices.
机译:本文对连续波(cw)激光和chi脉冲激发下石墨烯体系的种群动力学进行了理论研究。我们的数值模拟结果表明,可以通过选择appropriate速率,激光场强度和频率以及其他系统参数的适当值来实现从初始占据的基态到初始未占据的激发态的完全人口转移。此外,我们观察到初始基态和激发的最终态之间的相干Rabi样总体振荡。它是由连续波和chi脉冲激光场的共同作用引起的。这些结果将有助于理解石墨烯系统中的载子-载子和载子-声子相互作用,并可能在基于石墨烯的高速电子和光电设备中找到应用。

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