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Efficient beamshaping of high-power diode lasers using micro-optics

机译:使用微光学的高功率二极管激光器的高效光束整形

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摘要

We designed, fabricated and characterized a micro-optical beamshaping device, intended to optimize the coupling of an incoherent, linearly extended high-power diode-laser into a multimode fiber. The device uses two aligned micro-optical elements (DOEs) in combination with conventional optics. With a first prototype we achieved an overall efficiency of 28 %. Straightforward improvements, like antireflective coatings and the use of graytone elements, should lead to an efficiency of about 50 %. The device is compact and the fabrication is suited for mass production at low cost. We applied three different technologies for the fabrication of the micro-optical elements and compared the performance. The technologies were: direct laser writing, multiple projection photolithography in combination with reactive ion etching (RIE) in fused silica, and high-energy-beam-sensitive (HEBS) glass graytone lithography in photoresist. We found that the refractive type elements (graytone) yield better efficiency for large deflection angles, while diffractive elements give intrinsically accurate deflection angles.
机译:我们设计,制造和表征了一种微光学光束整形设备,旨在优化将非相干,线性扩展的高功率二极管激光器耦合到多模光纤中。该设备将两个对齐的微光学元件(DOE)与常规光学元件结合使用。通过第一个原型,我们实现了28%的总体效率。诸如防反射涂层和使用灰度元素之类的简单改进,应该可以使效率提高约50%。该装置是紧凑的,并且其制造适合于低成本的大量生产。我们应用了三种不同的技术来制造微光学元件并比较了性能。这些技术包括:直接激光写入,在熔融石英中结合反应离子刻蚀(RIE)的多重投影光刻以及在光刻胶中的高能束敏感(HEBS)玻璃灰阶光刻。我们发现,对于大的偏转角,折射型元件(灰度)产生更高的效率,而衍射元件给出固有的精确偏转角。

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