Solid State Institute and Physics department, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Phys Rev Lett. 2018 Mar 30;120(13):133206. doi: 10.1103/PhysRevLett.120.133206.
Optical chirality (OC)-one of the fundamental quantities of electromagnetic fields-corresponds to the instantaneous chirality of light. It has been utilized for exploring chiral light-matter interactions in linear optics, but has not yet been applied to nonlinear processes. Motivated to explore the role of OC in the generation of helically polarized high-order harmonics and attosecond pulses, we first separate the OC of transversal and paraxial beams to polarization and orbital terms. We find that the polarization-associated OC of attosecond pulses corresponds approximately to that of the pump in the quasimonochromatic case, but not in the multichromatic pump cases. We associate this discrepancy with the fact that the polarization OC of multichromatic pumps vary rapidly in time along the optical cycle. Thus, we propose new quantities, noninstantaneous polarization-associated OC, and time-scale-weighted polarization-associated OC, and show that these quantities link the chirality of multichromatic pumps and their generated attosecond pulses. The presented extension to OC theory should be useful for exploring various nonlinear chiral light-matter interactions. For example, it stimulates us to propose a tricircular pump for generation of highly elliptical attosecond pulses with a tunable ellipticity.
光学手性(OC)是电磁场的基本属性之一,对应于光的瞬时手性。它已被用于研究线性光学中的手性光物质相互作用,但尚未应用于非线性过程。为了探索 OC 在螺旋极化高阶谐波和阿秒脉冲产生中的作用,我们首先将横向和傍轴光束的 OC 分离为偏振和轨道项。我们发现,阿秒脉冲的偏振相关 OC 在准单色情况下大致对应于泵浦的 OC,但在多色泵浦情况下则不对应。我们将这种差异归因于多色泵浦的偏振 OC 在光周期内随时间快速变化的事实。因此,我们提出了新的量,非瞬时偏振相关 OC 和时间尺度加权偏振相关 OC,并表明这些量将多色泵浦的手性与其产生的阿秒脉冲联系起来。OC 理论的这一扩展对于探索各种非线性手性光物质相互作用应该是有用的。例如,它激发我们提出一种三圆泵浦,用于产生具有可调椭圆度的高度椭圆阿秒脉冲。