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Helical Magnetic Field-Induced Real-Time Plasmonic Chirality Modulation

机译:螺旋磁场诱导的实时等离子体性手性调节

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摘要

The astrophysical phenomenon of mimetic helical magnetic field (hB)-assisted self-assembly is herein introduced to build helical superstructures that display chiroptical properties. As a building block, magnetoplasmonic (MagPlas) Ag@Fe3O4 core-shell nanoparticles are used to guide plasmonic Ag nanoparticles onto a helical magnetic flux. The chirality of the assembled helical structures and tailored circular dichroism are successfully tuned in real time, and the handedness of the assembled structures is dynamically switched by the hB at the millisecond level, which is at least 6000-fold faster than other template-assisted methods. The peak position of circular dichroism can be reconfigured by altering the plasmonic resonance or coupling by controlling the size of the Ag core and magnetic flux density. The hB-induced chirality modulation represents a method to control the polarization state of light at the nexus of plasmonics, magnetic self-assembly, colloidal science, liquid crystals, and chirality. It presents active and dynamic chiral assemblies of magnetoplasmonic nanomaterials, enabling further practical applications in optical devices.
机译:本文介绍了模拟螺旋磁场(HB)自组装自组装的天体物理现象,以构建显示阴道特性的螺旋上部结构。作为构建块,磁正相声(Magplas)Ag @ Fe3O4核 - 壳纳米颗粒用于将等离子体Ag纳米颗粒引导到螺旋磁通量上。组装螺旋结构的手性和定制圆形二色性的实时成功调整,组装结构的手动由Hb动态切换,在毫秒水平上,比其他模板辅助方法快至少6000倍。通过控制Ag核心和磁通密度的尺寸来改变等离子体共振或耦合,可以重新配置圆形二中间的峰值位置。 HB诱导的手性调制表示控制磁性自组装,胶体科学,液晶和手性液体和手性的Nexus处的光偏振状态的方法。它提出了磁性磁性纳米材料的活性和动态手性组装,在光学器件中实现了进一步的实际应用。

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