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首页> 外文期刊>Journal of land use science >Controllable Spatial Array of Bessel-like Beams with Independent Axial Intensity Distributions for Laser Microprocessing
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Controllable Spatial Array of Bessel-like Beams with Independent Axial Intensity Distributions for Laser Microprocessing

机译:具有独立轴向强度分布的贝塞尔样光束的可控空间阵列,用于激光微处理

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摘要

Bessel beams generated via axicons are widely used for various applications like optical tweezers or laser microfabrication of transparent materials. The specific intensity profile having high aspect ratio of beam width and length in turn generates high aspect ratio void that resembles a needle. In contrast to commonly generated Bessel beam that has a fixed axial intensity distribution. We present a novel method to engineer an optical needle that can have an arbitrary axial intensity distribution via superposition of different cone angle Bessel beams. We analytically describe spatial spectra of an optical needle having arbitrary axial intensity distribution. We also demonstrate a superposition of independent optical needles and analyze the physical limitations to observe well separated optical needles as they are influence by mutual interference of the individual beams. In order to verify our theoretical and numerical results we generate controllable spatial arrays of individual beams with various numbers and spatial separations by altering a spectrum of incoming laser beam via spatial light modulator. Lastly, we numerically examine distortions caused by propagation through planar air-dielectric interface and show compensation method by appropriately modifying spectral masks.
机译:通过轴突产生的贝塞尔梁广泛用于光学镊子或透明材料的激光微生物等各种应用。具有光束宽度和长度的高纵横比的特定强度曲线产生类似于针的高纵横比空隙。与具有固定轴向强度分布的常用贝塞尔光束相反。我们提出了一种新颖的方法来设计一种通过不同锥角贝塞尔梁的叠加具有可以具有任意轴向强度分布的光学针的新方法。我们分析描述了具有任意轴向强度分布的光针的空间光谱。我们还展示了独立光针的叠加,并分析了观察到良好分离的光针的物理限制,因为它们是通过各个光束的相互干扰的影响。为了验证我们的理论和数值结果,通过通过空间光调制器改变进入的激光束,可以通过各种数量和空间分离产生各个光束的可控空间阵列。最后,我们通过平面空气介质接口传播引起的失真,并通过适当地修改光谱掩模来显示​​补偿方法。

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