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首页> 外文期刊>The Journal of Chemical Physics >Quantum coherent control of H-3(+) formation in strong fields
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Quantum coherent control of H-3(+) formation in strong fields

机译:强田H-3(+)形成的量子相干控制

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摘要

Quantum coherent control (QCC) has been successfully demonstrated experimentally and theoretically for two-and three-photon optical excitation of atoms and molecules. Here, we explore QCC using spectral phase functions with a single spectral phase step for controlling the yield of H-3(+) from methanol under strong laser field excitation. We observe a significant and systematic enhanced production of H-3(+) when a negative 3/4 pi phase step is applied near the low energy region of the laser spectrum and when a positive 3/4 pi phase step is applied near the high energy region of the laser spectrum. In some cases, most notably the HCO+ fragment, we found the enhancement exceeded the yield measured for transform limited pulses. The observation of enhanced yield is surprising and far from the QCC prediction of yield suppression. The observed QCC enhancement implies an underlying strong field process responsible for polyatomic fragmentation controllable by easy to reproduce shaped pulses. Published under license by AIP Publishing.
机译:已经通过实验和理论上成功地证明了量子相干控制(QCC),用于原子和分子的两和三光子光学激发。这里,我们利用光谱相位探索QCC,具有单一的光谱相步骤,用于在强烈的激光场激发下从甲醇控制H-3(+)的产率。当施加负3/4 pi相位在激光谱的低能量区域附近施加阳性3/4 pi相步骤附近,我们观察到的H-3(+)的显着和系统的增强生产激光光谱的能量区域。在某些情况下,最值得注意的是HCO +片段,我们发现增强超过了用于变换限制脉冲的产量。观察提高产量令人惊讶,远离QCC对产量抑制的预测。所观察到的QCC增强暗示了一种潜在的强大场过程,其负责通过易于再现形状的脉冲来控制的多原子碎片。通过AIP发布在许可证下发布。

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