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Ultrafast dynamics of coherent optical phonons and nonequilibrium electrons in transition metals

机译:过渡金属中相干光子和非平衡电子的超快动力学

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The femtosecond optical pump-probe technique was used to study dynamics of photoexcited electrons and coherent optical phonons in transition metals Zn and Cd as a function of temperature and excitation level. The optical response in time domain is well fitted by linear combination of a damped harmonic oscillation because of excitation of coherent E_(2g) phonon and a subpicosecond transient response due to electron-phonon thermal-ization. The electron-phonon thermalization time monotonically increases with temperature, consistent with the thermomodulation scenario, where at high temperatures the system can be well explained by the two-temperature model, while below ≈ 50 K the nonthermal electron model needs to be applied. As the lattice temperature increases, the damping of the coherent E_(2g) phonon increases, while the amplitudes of both fast electronic response and the coherent E_(2g) phonon decrease. The temperature dependence of the damping of the E_(2g) phonon indicates that population decay of the coherent optical phonon due to anharmonic phonon-phonon coupling dominates the decay process. We present a model that accounts for the observed temperature dependence of the amplitude assuming the photoinduced absorption mechanism, where the signal amplitude is proportional to the photoinduced change in the quasiparticle density. The result that the amplitude of the E_(2g) phonon follows the temperature dependence of the amplitude of the fast electronic transient indicates that under the resonant condition both electronic and phononic responses are proportional to the change in the dielectric function.
机译:飞秒光学泵浦探针技术用于研究过渡金属Zn和Cd中光激发电子和相干光子的动力学随温度和激发能级的变化。由于相干E_(2g)声子的激发和电子声子热化引起的亚皮秒瞬态响应,阻尼谐波振荡的线性组合很好地拟合了时域中的光学响应。电子-声子的热化时间随温度单调增加,这与热调节方案一致,在高温下,该系统可以通过双温度模型很好地解释,而在≈50 K以下,则需要应用非热电子模型。随着晶格温度的升高,相干E_(2g)声子的阻尼增加,而快速电子响应和相干E_(2g)声子的幅度都减小。 E_(2g)声子阻尼的温度依赖性表明,由于非谐声子-声子耦合,相干光子的总体衰减占主导地位。我们提出了一个模型,该模型假设了光致吸收机制,说明了所观察到的幅度的温度依赖性,其中信号幅度与准粒子密度中的光致变化成比例。 E_(2g)声子的幅度遵循快速电子瞬变幅度的温度依赖性的结果表明,在共振条件下,电子响应和声子响应均与介电函数的变化成比例。

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