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Nanorotors using asymmetric Inorganic nanorods in an optical trap

机译:在光阱中使用不对称无机纳米棒的纳米转子

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We demonstrate how light force, irrespective of the polarization of the light, can be used to run a simple nanorotor. While the gradient force of a single beam optical trap is used to hold an asymmetric nanorod, we utilize the scattering force to generate a torque on the nanorod, making it rotate about the optic axis. The inherent textural irregularities or morphological asymmetries of the nanorods give rise to the torque under the radiation pressure. Even a small surface irregularity with non-zero chirality is sufficient to produce enough torque for moderate rotational speed. Different sized rotors can be used to set the speed of rotation over a wide range with fine tuning possible through the variation of the laser power. We present a simple dimensional analysis to qualitatively explain the observed trend of the rotational motion of the nanorods.
机译:我们演示了如何使用光力,而不考虑光的偏振,来运行简单的纳米转子。虽然单光束光阱的梯度力用于固定不对称的纳米棒,但我们利用散射力在纳米棒上产生扭矩,从而使其绕光轴旋转。纳米棒固有的纹理不规则或形态不对称会在辐射压力下产生扭矩。甚至具有非零手性的很小的表面不规则度也足以产生足够的扭矩以实现中等转速。可以使用不同尺寸的转子在较大范围内设置旋转速度,并可以通过改变激光功率来进行微调。我们提出了一个简单的尺寸分析,以定性地解释纳米棒旋转运动的观察趋势。

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