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High-Performance All-Organic DFB and DBR Waveguide Laser with Various Grating Height Fabricated by a Two-Photon Absorption DLW Method

机译:通过双光子吸收DLW方法制造的各种光栅高度的高性能全有机DFB和DBR波导激光器

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摘要

Organic solid-state lasers (OSSLs) with distributed feedback (DFB) structures or distributed Bragg reflectors (DBRs) are promising for potential application in bio-sensing and hazardous materials detection. Here, the laser performances of the all-organic DFB waveguide lasers with various grating heights ranging from 0.4 to 4.7 μm were investigated. The grating structures used as the lasing cavity were fabricated using a two-photon absorption (TPA) direct laser writing (DLW) method with an SU-8 negative photoresist. The laser active layer consisted of a rhodamine 6G (R6G) laser dye and a cellulose acetate (CA) matrix. The R6G/CA solution was spin-coated onto the quartz substrate with the cavity (grating) structures to fabricate the DFB waveguide laser devices. The diffraction order of lasing ranged from m = 4 to 7. As the grating height was increased to 1.9 μm, the slope efficiency increased for all diffraction orders and the threshold decreases for each diffraction order. The dependence of the cavity (grating) length on the laser performances was investigated. The slope efficiency increased as the cavity length increased to 300 μm. The effect of the cavity (grating) position on the slope efficiency and the threshold position of the cavity (grating) was also studied. A maximum slope efficiency of 10.2% was achieved for the DFB waveguide laser device with a cavity (grating) length of 300 μm, a cavity position at 6 mm from the emission edge of the waveguide, and an aspect ratio ≈3 between the grating height of 1.74 μm and the grating width of 0.6 μm for the diffraction order m = 6 for lasing.
机译:具有分布式反馈(DFB)结构或分布式布拉格反射器(DBR)的有机固态激光器(OSSL)有望在生物传感和有害物质检测中潜在应用。在此,研究了光栅高度在0.4至4.7μm范围内的全有机DFB波导激光器的激光器性能。使用具有SU-8负性光刻胶的双光子吸收(TPA)直接激光写入(DLW)方法制造用作激光腔的光栅结构。激光活性层由若丹明6G(R6G)激光染料和醋酸纤维素(CA)基质组成。将R6G / CA溶液旋涂到具有腔体(光栅)结构的石英基板上,以制造DFB波导激光器。激光的衍射级在m = 4到7之间。随着光栅高度增加到1.9μm,所有衍射级的斜率效率增加,并且每个衍射级的阈值降低。研究了腔(光栅)长度对激光性能的依赖性。斜率效率随着腔体长度增加到300μm而增加。还研究了空腔(光栅)位置对斜率效率的影响以及空腔(光栅)的阈值位置。对于DFB波导激光器件,其腔(光栅)长度为300μm,腔位置距波导的发射边缘6 mm,并且光栅高度之间的长宽比≈3,最大倾斜效率达到10.2%对于激光的衍射级m 1 = 6,衍射角为1.74μm,光栅宽度为0.6μm。

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