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Polarization Dependent Excitation and High Harmonic Generation from Intense Mid-IR Laser Pulses in ZnO

机译:ZnO中激烈的中红外激光脉冲的极化依赖激发和高谐波产生

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摘要

The generation of high order harmonics from femtosecond mid-IR laser pulses in ZnO has shown great potential to reveal new insight into the ultrafast electron dynamics on a few femtosecond timescale. In this work we report on the experimental investigation of photoluminescence and high-order harmonic generation (HHG) in a ZnO single crystal and polycrystalline thin film irradiated with intense femtosecond mid-IR laser pulses. The ellipticity dependence of the HHG process is experimentally studied up to the 17th harmonic order for various driving laser wavelengths in the spectral range 3–4 µm. Interband Zener tunneling is found to exhibit a significant excitation efficiency drop for circularly polarized strong-field pump pulses. For higher harmonics with energies larger than the bandgap, the measured ellipticity dependence can be quantitatively described by numerical simulations based on the density matrix equations. The ellipticity dependence of the below and above ZnO band gap harmonics as a function of the laser wavelength provides an efficient method for distinguishing the dominant HHG mechanism for different harmonic orders.
机译:从ZnO的Femtosecond Mid-IR激光脉冲的高阶谐波的产生表现出很大的潜力,可以揭示对少数飞秒秒的少量级别的新洞察力。在这项工作中,我们报告了用强烈的飞秒中红外激光脉冲照射的ZnO单晶和多晶薄膜中的光致发光和高阶谐波产生(HHG)的实验研究。 HHG工艺的椭圆性依赖性在实验上研究了光谱范围3-4μm的各种驱动激光波长的第17次谐波序列。发现间带齐纳隧道隧道展示圆极化的强场泵脉冲的显着激发效率下降。对于具有大于带隙的能量的更高谐波,可以通过基于密度矩阵方程的数值模拟来定量地描述测量的椭圆形依赖性。以下和上述ZnO带隙谐波作为激光波长的函数的椭圆性依赖性提供了一种有效的方法,用于区分主要HHG机制以进行不同谐波序列。

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