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Micro-mirrors connected in series for loss-mechanism study and low-voltage operation

机译:串联微镜,用于损耗机理研究和低压操作

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Micro mirrors connected in series are fabricated and studied for investigating loss mechanism of rotation hinge. Three identical mirrors (center-mirror and side-mirrors) are connected by torsion bars but the torsion bars of the center-mirror are not connected to supporting points of substrate. The other sides of torsion bars of the side-mirrors are fixed to the supporting points of substrate. Since the motions of the series-mirrors are identical to a single mirror in a specific rotational mode, the loss by the supporting points is estimated by comparing their Q factors in vacuum. The Q factor of the series-mirrors is higher by about two orders than that of the single mirror. The energy loss by the supporting points is estimated. The operation voltage of the comb-drive mirror under the resonant condition in vacuum can be decreased by suppressing the loss by the supporting points although the air friction loss is dominant.
机译:制作并研究了串联连接的微镜,以研究旋转铰链的损耗机理。三个相同的镜(中心镜和侧镜)通过扭杆连接,但中心镜的扭杆未连接到基板的支撑点。侧镜的扭杆的另一侧固定在基板的支撑点上。由于串联镜在特定的旋转模式下的运动与单个镜相同,因此,通过比较支撑点在真空中的Q因子,可以估算出支撑点的损耗。串联反射镜的Q因子比单个反射镜的Q因子高大约两个数量级。估算支撑点的能量损失。尽管空气摩擦损耗占主导地位,但通过抑制支撑点的损耗,可以降低真空中谐振条件下梳状驱动镜的工作电压。

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