论文标题

picsecond脉冲成型,用于强大的三维无场对齐不对称分子的无场比对

Picosecond pulse-shaping for strong three-dimensional field-free alignment of generic asymmetric-top molecules

论文作者

Mullins, Terry, Karamatskos, Evangelos Thomas, Wiese, Joss, Onvlee, Jolijn, Rouzée, Arnaud, Yachmenev, Andrey, Trippel, Sebastian, Küpper, Jochen

论文摘要

空间中的分子是分子结构和动力学成像的关键步骤。在这里,我们使用椭圆极化的,形状的,抗谐振的激光脉冲证明了原型不对称顶部分子吲哚的三维(3D)无场对齐。使用宽带激光脉冲的基于空间 - 轻型调节器(SLM)的脉冲塑形器(SLM)脉冲塑造器的极端线性chi和受控相和振幅形状的组合产生截短的激光脉冲。通过速度映射成像H $^+$和C $^{2+} $片段来检测到角度的限制,这是由强场电离和库仑爆炸引起的,该分子通过激烈的飞跃激光脉冲对排列的分子进行了爆炸。所达到的三维比对的特征是将不同对齐方向的离子速度映射测量结果和对齐激光脉冲期间和之后的不同时间与准确的计算结果进行比较。实现的强大三维无场对齐方式的$ \ langle \ cos^{2}δ\ rangle = 0.89 $证明了这两者的可行性,具有强大的三维复杂分子和定量表征的强大三维比对。

Fixing molecules in space is a crucial step for the imaging of molecular structure and dynamics. Here, we demonstrate three-dimensional (3D) field-free alignment of the prototypical asymmetric top molecule indole using elliptically polarized, shaped, off-resonant laser pulses. A truncated laser pulse is produced using a combination of extreme linear chirping and controlled phase and amplitude shaping using a spatial-light-modulator (SLM) based pulse shaper of a broadband laser pulse. The angular confinement is detected through velocity-map imaging of H$^+$ and C$^{2+}$ fragments resulting from strong-field ionization and Coulomb explosion of the aligned molecules by intense femtosecond laser pulses. The achieved three-dimensional alignment is characterized by comparing the result of ion-velocity-map measurements for different alignment directions and for different times during and after the alignment laser pulse to accurate computational results. The achieved strong three-dimensional field-free alignment of $\langle \cos^{2}δ\rangle=0.89$ demonstrates the feasibility of both, strong three-dimensional alignment of generic complex molecules and its quantitative characterization.

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