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Lateral sorting of chiral nanoparticles using Fano-enhanced chiral force in visible region

机译:手性纳米粒子的横向分类可见区域Fano-enhanced手性力量

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Chiral gradient force allows a passive separation of an enantiomer since its direction is dependent on the handedness of its chiral entities. However, chiral polarisability is much weaker than electric polarisability. As a consequence, the non-chiral gradient force dominates over chiral force, which makes enantio-selective sorting challenging. We present here, both numerically and analytically, that the chiral gradient force acting on chiral nanoparticles can overcome the non-chiral force when specimens are placed in a Fano-enhanced chiral gradient near-field using a plasmonic nanoaperture. Under circularly polarized light illumination, the interaction between the resonant modes of symmetric outer and asymmetric inner Au split-rings results in a splitting of the modal energies, which excites multipolar interference Fano resonances (FRs). This enables a local aperture between the two split-rings to possess very large optical chirality gradients while maintaining low gradients of electromagnetic energy density around the FRs from the visible region. By way of the lateral resultant force composed of both chiral and non-chiral gradient forces, we can accomplish a helicity-dependent transverse deflection of the chiral nanoparticles positioned above the aperture, which may offer a good platform for all-optical enantiopure compounds.
机译:手性分离梯度力允许被动以来对映体的方向是相关的手性构型的实体。然而,手性极化度弱得多电极化率。non-chiral梯度力占主导地位手性力量,这使得enantio-selective排序有挑战性。数值模拟和分析,手性的梯度力作用于手性纳米粒子克服non-chiral力当标本放置在一个Fano-enhanced手性梯度使用电浆nanoaperture近场。圆偏振光照明,相互作用的共振模式对称外和非对称内非盟split-rings导致分裂的模态能量,激发多极干扰法诺共振(FRs)。孔径之间的两个split-rings拥有非常大的光学手性梯度保持低梯度的电磁的能量密度在FRs可见地区。由手性和non-chiral梯度力,我们可以完成helicity-dependent手性纳米粒子的横向偏转定位孔上方,这可能会提供一个全光学enantiopure的好平台化合物。

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