Absolute and relative surface profile interferometry using multiple frequency-scanned lasers

M. Peca, P. Psota, P. Vojtíšek, V. Ledl
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引用次数: 2

Abstract

An interferometer has been used to measure the surface profile of generic object. Frequency scanning interferometry has been employed to provide unambiguous phase readings, to suppress etalon fringes, and to supersede phase-shifting. The frequency scan has been performed in three narrow wavelength bands, each generated by a temperature tuned laser diode. It is shown, that for certain portions of measured object, it was possible to get absolute phase measurement, counting all wave periods from the point of zero path difference, yielding precision of 2.7nm RMS over 11.75mm total path difference. For the other areas where steep slopes were present in object geometry, a relative measurement is still possible, at measured surface roughness comparable to that of machining process (the same 2.7nm RMS). It is concluded, that areas containing steep slopes exhibit systematic error, attributed to a combined factors of dispersion and retrace error.
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使用多频扫描激光的绝对和相对表面轮廓干涉测量
用干涉仪测量了一般物体的表面轮廓。频率扫描干涉测量已被用于提供明确的相位读数,抑制标准子条纹,并取代相移。频率扫描在三个狭窄的波长波段进行,每个波段由温度调谐激光二极管产生。结果表明,对于被测物体的某些部分,可以获得绝对相位测量,从零程差点开始计算所有波周期,在11.75mm的总程差上获得2.7nm的RMS精度。对于物体几何形状中存在陡坡的其他区域,仍然可以在测量的表面粗糙度与加工过程(相同的2.7nm RMS)相当的情况下进行相对测量。结论是,含有陡坡的地区存在系统误差,这是由于分散和回溯误差的综合因素造成的。
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