Design of optical phased array beam steering with limited dispersion

P. McManamon, E. Watson
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引用次数: 6

Abstract

This paper shows how the dispersion associated with optical phased array beam steering can be limited to moderate values of 20 to 80 times the diffraction limit even for very large angle beam steering. Much of the remaining factor of 20-80 may be correctable using digital techniques. A significant obstacle associated with widespread implementation of optical phased array beam steering is the wavelength dispersion associated with resets. We discuss optical phased array beam steering using resets of greater than one wavelength. By using larger resets the unfolded phase front for wavelengths other than the design wavelength can be maintained closer to a prism, thus limiting dispersion. This technique can be implemented with the variable period beam steering approach and the variable blaze beam steering approach. One way to implement the variable blaze beam steering approach is using movable lenslets. This method of implementation is amenable to large value resets, so it is an attractive method of implementation for this multiple wavelength reset, limited dispersion, beam steering technique. By using resets of multiple wavelengths and limiting the dispersion we will be able to steer passive, broadband, electrooptical sensors over wide angles using optical phased array technology.
有限色散光相控阵光束导向设计
本文展示了如何将与光学相控阵光束转向相关的色散限制在中等值,即衍射极限的20至80倍,即使是非常大的角度光束转向。剩下的20-80的大部分可以用数字技术来校正。与广泛实施光学相控阵光束转向相关的一个重要障碍是与复位相关的波长色散。我们讨论光相控阵光束转向使用大于一个波长的复位。通过使用更大的重置,展开的相位前波长以外的设计波长可以保持更接近棱镜,从而限制色散。该技术可以通过变周期波束转向方法和变火焰波束转向方法来实现。实现可变火焰光束转向方法的一种方法是使用可移动透镜。这种实现方法适用于大值复位,因此对于这种多波长复位、有限色散、光束导向技术是一种有吸引力的实现方法。通过使用多个波长的重置和限制色散,我们将能够使用光学相控阵技术在广角范围内引导无源、宽带、光电传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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