论文标题
在阈值电离和电离速率的高度手性二科运动中
Strong chiral dichroism in above threshold ionization and ionization rates from locally-chiral light
论文作者
论文摘要
我们在这里得出了一种新的高度选择性光电子的手性敏感技术,该技术利用了“局部手持”激光脉冲。我们表明,这种方法会导致强烈的手性歧视,其中取消了光电子圆形二色性(PECD)的标准前进/向后不对称。在所有半球中都发现所得的二色性要比常规PECD大得多,更健壮,并且相对于任何对称性操作员而言并不是对称或反对称的。值得注意的是,高达10%的CD在阈值高于阈值电离(ATI)光谱中生存,总电离速率高达5%。我们通过在手性分子中的Ab-Initio计算溴氯甲烷,柠檬烯,富琴和樟脑证明了这些结果。我们还探索了局部手持场的参数空间,并表明观察到的CD与光的手性程度密切相关,从而将其验证为手性相互作用强度的度量。我们的结果为高度选择性探测ATI的超快手性铺平了道路,可能会导致全光对映体分离,并激励使用局部手工光来增强超快光谱。
We derive here a new highly selective photoelectron-based chirality-sensing technique that utilizes 'locally-chiral' laser pulses. We show that this approach results in strong chiral discrimination, where the standard forwards/backwards asymmetry of photoelectron circular dichroism (PECD) is lifted. The resulting dichroism is much larger and more robust than conventional PECD, is found in all hemispheres, and is not symmetric or antisymmetric with respect to any symmetry operator. Remarkably, a CD of up to 10% survives in the angularly-integrated above-threshold ionization (ATI) spectra, and of up to 5% in the total ionization rates. We demonstrate these results through ab-initio calculations in the chiral molecules Bromochlorofluoromethane, Limonene, Fenchone, and Camphor. We also explore the parameter-space of the locally-chiral field and show that the observed CD is strongly correlated to the degree of chirality of the light, validating it as a measure for chiral-interaction strengths. Our results pave the way for highly selective probing of ultrafast chirality in ATI, can potentially lead to all-optical enantio-separation, and motivate the use of locally-chiral light for enhancing ultrafast spectroscopies.