论文标题
手性腔中的强耦合:对映异构体歧视的非扰动框架
Strong coupling in chiral cavities: nonperturbative framework for enantiomer discrimination
论文作者
论文摘要
在化学和物理学中,开发有效的技术以区分手性分子(对映体)的镜像图像非常重要。对映异构体具有大多数分子特性,除了圆形极化光的吸收。因此,对映异构体纯化是一项具有挑战性的任务,需要专门的设备。量化场与物质之间的强耦合(例如,在光腔中)是一种以非侵入性方式修饰分子过程的有前途的技术。分子特性的调节是通过更改场特征来实现的。在这项工作中,我们研究了与圆形极化电磁场的强耦合是否是区分手性分子的可行方法。为此,我们开发了一个非扰动框架来计算手性腔中分子的行为。我们表明,在这种情况下,对映体具有不同的能量 - 也就是说,一个比另一个能量更稳定。现场诱导的能量差异也显示出引起旋转光谱中的对映体特异性特异性特异性特异性标志。
The development of efficient techniques to distinguish mirror images of chiral molecules (enantiomers) is very important in both chemistry and physics. Enantiomers share most molecular properties except, for instance, the absorption of circularly polarized light. Enantiomer purification is therefore a challenging task that requires specialized equipment. Strong coupling between quantized fields and matter (e.g. in optical cavities) is a promising technique to modify molecular processes in a non-invasive way. The modulation of molecular properties is achieved by changing the field characteristics. In this work, we investigate whether strong coupling to circularly polarized electromagnetic fields is a viable way to discriminate chiral molecules. To this end, we develop a nonperturbative framework to calculate the behavior of molecules in chiral cavities. We show that in this setting the enantiomers have different energies -- that is, one is more stable than the other. The field-induced energy differences are also shown to give rise to enantiospecific signatures in rotational spectra.