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Design of H-PDLC Grating Array chopper applied in frequency division multiplexed integrated confocal microscopy

机译:H-PDLC光栅阵列斩波器在频分复用集成共聚焦显微镜中的设计

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A new type of electrically controlled optical chopper based on Holographic Polymer Dispersed Liquid Crystal (H-PDLC) grating array is demonstrated in this paper. H-PDLC grating can be erased and become transparent to the incident beam when applied the external voltage. H-PDLC grating recovers and diffracts incident light in the original way after removal the driving voltage. Thus the intensity and the frequency modulation to the incident beam can be achieved through adjusting the voltage applied on the H-PDLC cell. Compared with a conventional chopper, the H-PDLC gratings exhibit more advantage like much faster response time, the grating array is much more integrated and easier to be fabricated etc. Moreover, electro-optical properties including response time and diffraction efficiency of H-PDLC gratings are investigated. By optimizing some parameters, H-PDLC chopper cell with a microsecond response time and high diffraction efficiency is obtained. The driving voltage of H-PDLC can be reduced through controlling the droplet size in H-PDLC and the thickness of the grating. As the application example, the chopper is applied in the new born frequency division multiplexed multichannel fluorescence confocal microscopy so that it can improve the temporal and spatial resolution ability of the microscopy system.
机译:本文介绍了一种基于全息聚合物分散液晶(H-PDLC)光栅阵列的新型电控斩波器。当施加外部电压时,H-PDLC光栅可以被擦除并变得对入射光束透明。去除驱动电压后,H-PDLC光栅以原始方式恢复和衍射入射光。因此,可以通过调节施加在H-PDLC单元上的电压来实现对入射光束的强度和频率调制。与传统的斩波器相比,H-PDLC光栅具有更多的优势,例如响应时间更快,光栅阵列集成度更高,更易于制造等。此外,H-PDLC的电光特性包括响应时间和衍射效率光栅进行了研究。通过优化一些参数,获得了具有微秒响应时间和高衍射效率的H-PDLC斩波器。 H-PDLC的驱动电压可以通过控制H-PDLC中的墨滴大小和光栅厚度来降低。作为应用实例,斩波器被应用于新生的频分多路复用多通道荧光共聚焦显微镜,从而可以提高显微镜系统的时间和空间分辨能力。

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