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Distance to the optical energy sensor to convert further into electrical energy, and the surface scanning device using the same

机译:距光能传感器进一步转换为电能的距离,以及使用该距离的表面扫描装置

摘要

A sensor body (1) is formed as a light waveguide for laser light (2). A light exit site (10) for light diffracted within the sensor body (1) is located at a surface (6) thereof which faces away from a measured body (M). A detection particle (15) is located at the surface (5) of the sensor body (1) facing the measured body (M). It has a substantially convex and rounded off form and a major dimension which is smaller than the wavelength of the light (2). The measured body (M) is located in the optical near field of the detection particle (15). The latter has a major dimension of 5 to 500 nm and preferably of 20 to 100 nm. A detector means (11) converts the optical energy of the diffracted light to an electrical detector signal. A continuous thin film (16) is provided as a coating for the sensor (S). It substantially covers the detection particle (15) and at least part of the surface (5) of the sensor body (1) in the vicinity of the detection particle (15) It has a thickness which is smaller than one half of said predetermined wavelength. Preferably it is formed of gold and has a thickness of less than 100 nm. The sensor is used to finally convert a distance to an electrical quantity.
机译:传感器主体(1)形成为用于激光(2)的光波导。用于在传感器主体(1)内衍射的光的出光部位(10)位于其远离被测主体(M)的表面(6)上。检测粒子(15)位于传感器主体(1)面对被测主体(M)的表面(5)上。它具有基本上凸起和倒圆的形式,并且其主要尺寸小于光(2)的波长。被测体(M)位于检测粒子(15)的光学近场中。后者的主尺寸为5至500nm,优选为20至100nm。检测器装置(11)将衍射光的光能转换成电检测器信号。提供连续的薄膜(16)作为传感器(S)的涂层。它基本上覆盖检测颗粒(15)以及在检测颗粒(15)附近的传感器主体(1)的表面(5)的至少一部分。其厚度小于所述预定波长的一半。 。优选地,它由金形成并且具有小于100nm的厚度。传感器用于最终将距离转换为电量。

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