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Aligned copper nanorod arrays for highly efficient generation of intense ultra-broadband THz pulses

机译:对准的铜纳米棒阵列可高效生成强烈的超宽带太赫兹脉冲

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摘要

We demonstrate an intense broadband terahertz (THz) source based on the interaction of relativistic-intensity femtosecond lasers with aligned copper nanorod array targets. For copper nanorod targets with a length of 5 μm, a maximum 13.8 times enhancement in the THz pulse energy (in ≤20 THz spectral range) is measured as compared to that with a thick plane copper target under the same laser conditions. A further increase in the nanorod length leads to a decrease in the THz pulse energy at medium frequencies (≤20 THz) and increase of the electromagnetic pulse energy in the high-frequency range (from 20–200 THz). For the latter, we measure a maximum energy enhancement of 28 times for the nanorod targets with a length of 60 μm. Particle-in-cell simulations reveal that THz pulses are mostly generated by coherent transition radiation of laser produced hot electrons, which are efficiently enhanced with the use of nanorod targets. Good agreement is found between the simulation and experimental results.
机译:我们展示了相对论强度飞秒激光与对准的铜纳米棒阵列靶标相互作用的强宽带太赫兹(THz)源。对于长度为5μm的铜纳米棒靶,与在相同激光条件下使用厚平面铜靶相比,测量到的THz脉冲能量(在≤20THz光谱范围内)最大增强了13.8倍。纳米棒长度的进一步增加导致中频(≤20THz)的THz脉冲能量减少,而在高频范围(20-200 THz)的电磁脉冲能量增加。对于后者,我们测量长度为60μm的纳米棒靶的最大能量增强28倍。单元中的粒子模拟显示,太赫兹脉冲主要是由激光产生的热电子的相干过渡辐射产生的,通过使用纳米棒靶可以有效地增强它们。在仿真和实验结果之间找到了很好的一致性。

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