首页> 外文会议>Conference on Interferometry XII: Techniques and Analysis; 20040802-20040803; Denver,CO; US >Massively parallel interferometry: towards the all-integrated lambdameter
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Massively parallel interferometry: towards the all-integrated lambdameter

机译:大规模平行干涉仪:朝着全集成式λ计

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In this paper we present recent work about the application of digital phase detection for accurate wavelength measurement using two beam interferometry (lambdametry). The advantage of two beam interferometry is the sinusoidal fringe signal for which precise phase detection algorithms exist. Modern algorithms can cope with different sources of errors, and correct them. We recall the principle of the Michelson-type lambdameter using temporal interference and we introduce the Young-type lambdameter using spatial interference. The Young-type lambdameter is based on the acquisition of the interference pattern from two point sources (e.g. two ends of monomode optical fibers) projected onto a CCD camera. The measurement of an unknown wavelength can be achieved by comparison with a reference wavelength. Accurate interference phase maps can be calculated using spatial phase-shifting. In this way, each small group of contiguous pixels acts as a single interferometer, and the whole set of pixels corresponds to a massively parallel interferometric measurement system (up to many hundreds of thousands units). The major advantage of our method is its structural simplicity and the possibility of full optical integration. The final goal is to achieve a relative uncertainty of the order of some 10~(-8) with a measurement duration of the order of some minutes. Preliminary results are presented.
机译:在本文中,我们介绍了有关数字相位检测在使用两光束干涉法(λ法)进行精确波长测量中的应用的最新工作。两束干涉测量法的优点是存在精确相位检测算法的正弦条纹信号。现代算法可以应对各种错误源,并进行纠正。我们回想起使用时间干涉的迈克尔逊型拉曼计的原理,并介绍了使用空间干涉的杨式拉姆计。杨氏型λ计基于从投影到CCD相机上的两个点源(例如,单模光纤的两端)的干涉图案的获取。未知波长的测量可以通过与参考波长比较来实现。可以使用空间相移来计算准确的干扰相位图。以这种方式,每小组相邻的像素都充当一个干涉仪,并且整个像素集对应于一个大规模并行干涉测量系统(多达数十万个单位)。我们方法的主要优点是它的结构简单和完全光学集成的可能性。最终目标是在几分钟的测量持续时间内达到大约10〜(-8)的相对不确定性。初步结果已经提出。

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