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Alignment in angular-resolved multiphoton spectra of H2+

机译:H2 +的角分辨多光子光谱中的对准

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Abstract: Angular resolved kinetic energy distributions of fragments resulting from dissociation induced by intense, short, linearly polarized laser pulses are calculated using an accurate 3D Fourier transform method in spherical coordinates. The rotational excitation of the molecule leads, in general, to an alignment of the photofragments with respect to the field polarization vector. But, unexpectedly, increasing the field strength may also produce less aligned fragments at the higher kinetic energies of the multiphoton above threshold dissociation spectrum. H$- 2$/$+$PLU$/ photodissociating by interaction with an Nd:YAG laser at $lambda $EQ 532 nm and for intensities of 10-50 TW/cm$+2$/, is taken as an illustrative example, for which some angular resolved experimental spectra are available. A comprehensive interpretation is provided within the field dressed Floquet picture by referring to two strong field mechanisms; namely the potential barrier lowering, and the non-adiabatic transitions. Calculations are presented for three specific initial vibrational states leading to strongly anisotropic angular distributions which are discussed. !15
机译:摘要:使用精确的3D傅里叶变换方法在球坐标系中计算了由强,短,线性偏振激光脉冲引起的解离引起的碎片的角分辨动能分布。分子的旋转激发通常导致光碎片相对于场偏振矢量的对准。但是,出乎意料的是,增加电场强度也可能在高于阈值解离谱的多光子的较高动能下产生较少排列的碎片。 H $-2 $ / $ + $ PLU $ /通过与Nd:YAG激光在$λλEQ 532 nm处相互作用且强度为10-50 TW / cm $ + 2 $ /进行光解离作为说明性示例,可提供一些角度分辨的实验光谱。在现场穿着的Floquet图片中提供了全面的解释,其中涉及到两个强大的现场机制。即降低势垒和非绝热过渡。给出了针对三种特定的初始振动状态的计算结果,这些状态导致了强烈的各向异性角分布,对此进行了讨论。 !15

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