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Plasmonic nanorod absorbers as orientation sensors

机译:等离子纳米棒吸收器作为方向传感器

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摘要

Nanoparticles are actively exploited as biological imaging probes. Of particular interest are gold nanoparticles because of their non-blinking and nonbleaching absorption and scattering properties that arise from the excitation of surface plasmons. Nanoparticles with anisotropic shapes furthermore provide information about the probe orientation and its environment. Here we show how the orientation of single gold nanorods (25 × 73 nm) can be determined from both the transverse and longitudinal surface plasmon resonance by using polarization-sensitive photothermal imaging. By measuring the orientation of the same nanorods separately using scanning electron microscopy, we verified the high accuracy of this plasmon-absorption-based technique. However, care had to be taken when exciting the transverse plasmon absorption using a large numerical aperture objective as out-of-plane plasmon oscillations were also excited then. For the size regime studied here, being able to establish the nanorod orientation from the transverse mode is unique to photothermal imaging and almost impossible with conventional dark-field scattering spectroscopy. This is important because the transverse surface plasmon resonance is mostly insensitive to the medium refractive index and nanorod aspect ratio allowing nanorods of any length to be used as orientation sensors without changing the laser frequency.
机译:纳米颗粒被积极地用作生物成像探针。特别令人关注的是金纳米颗粒,因为它们的非闪烁和非漂白吸收和散射特性是由表面等离激元激发引起的。具有各向异性形状的纳米颗粒还提供了有关探针方向及其环境的信息。在这里,我们展示了如何通过使用偏振敏感光热成像从横向和纵向表面等离子体共振来确定单个金纳米棒(25×73 nm)的方向。通过使用扫描电子显微镜分别测量相同纳米棒的取向,我们验证了这种基于等离激元吸收的技术的高精度。但是,当使用大数值孔径物镜激发横向等离激元吸收时,必须小心,因为此时也激发了平面外等离激元振荡。对于此处研究的尺寸范围,能够从横向模式确定纳米棒的方向是光热成像所独有的,而传统的暗场散射光谱学几乎是不可能的。这很重要,因为横向等离子体激元共振对介质折射率和纳米棒长宽比几乎不敏感,因此可以将任何长度的纳米棒用作取向传感器而无需更改激光频率。

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