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Effects of optically absorbent coatings on parallel optical control of levitating milli-robots

机译:光学吸收涂层对悬浮米机的平行光学控制的影响

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Passively levitating pyrolytic graphite (PyG) milli-robots can be controlled optically due to the thermal dependence of PyG's magnetic susceptibility and optically induced, localized temperature changes. A combination of projector technology and optically absorbent coatings is proposed to address the challenge of simultaneous parallel control of levitating PyG milli-robots. Experimental results demonstrate successful parallel control using commercially available projector technology. Experimental actuation responses show marginal ability of absorbent coatings to increase PyG robot maximum actuation speed as well as reduce minimum controllable robot size under fixed optical power density constraints. While enhanced optical absorption opens opportunities for system miniaturization and extension to device-level magneto-optic actuators, doing so with minimal impact to levitating properties in a highly thermally conductive material remains a challenge.
机译:由于Pyg磁化率和光学诱导的局部温度变化,因此可以光学悬浮热解石墨(PYG)毫在机器人可以光学控制。提出了投影仪技术和光学吸收涂层的组合,以解决悬浮PYG Milli-Trobots的同时平行控制的挑战。实验结果表明,使用市售投影仪技术成功并行控制。实验致动响应显示吸收涂层的边缘能力,以提高PyG机器人最大致动速度以及降低固定光功率密度约束下的最小可控机器人尺寸。虽然增强的光学吸收打开系统小型化和扩展到设备级磁光致动器的机会,但在高导热材料中对悬浮性能的影响最小,仍然是一个挑战。

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