论文标题
超快的光旋转,以实现极敏感的对映射歧视
Ultrafast optical rotation for extremely sensitive enantio-discrimination
论文作者
论文摘要
光波形的雕刻亚周期时间结构允许一个人像原子,分子和固体中的电子云形象,甚至可以控制电子云。在这里,我们展示了这种光波形在空间限制后产生的横向自旋成分如何实现极有效的手性识别和对超快手性动力学的控制。当一个强烈的几个周期,线性极化激光脉冲紧密聚焦于随机取向的手性分子的介质中时,培养基会产生椭圆极化的光,具有相反的螺旋性和相反的椭圆形相对介质的旋转。与手性介质的常规光学活性相反,这种新的非线性光学活性是由纯电 - 偶极相互作用驱动的,并导致近乎vis-uv域中的巨大对映射剂敏感性,在那里光学仪器很容易获得。添加偏振器将极化椭圆的旋转变成非线性光响应的高度对对映射敏感性的强度。入射光波的亚周期光控制能够完全控制对映射敏感的响应。提出的全光学方法不仅可以实现极其有效的手性歧视,还可以通过商用光学技术对手性动力学进行超快速成像和控制。
Sculpting sub-cycle temporal structures of optical waveforms allows one to image and even control electronic clouds in atoms, molecules and solids. Here we show how the transverse spin component arising upon spatial confinement of such optical waveforms enables extremely efficient chiral recognition and control of ultrafast chiral dynamics. When an intense few-cycle, linearly polarized laser pulse is tightly focused into a medium of randomly oriented chiral molecules, the medium generates light which is elliptically polarized, with opposite helicities and opposite rotations of the polarization ellipse in media of opposite handedness. In contrast to conventional optical activity of chiral media, this new nonlinear optical activity is driven by purely electric-dipole interactions and leads to giant enantio-sensitivity in the near VIS-UV domain, where optical instrumentation is readily available. Adding a polarizer turns rotation of the polarization ellipse into highly enantio-sensitive intensity of the nonlinear-optical response. Sub-cycle optical control of the incident light wave enables full control over the enantio-sensitive response. The proposed all-optical method not only enables extremely efficient chiral discrimination, but also ultrafast imaging and control of chiral dynamics with commercially available optical technology.