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Collimating diode laser beams from a large-area VCSEL-array using microlens array

机译:使用微透镜阵列准直来自大面积VCSEL阵列的二极管激光束

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In this letter, we demonstrate the fabrication and bonding of a 1 cm/spl times/1 cm monolithic two dimensional (2D) vertical-cavity surface-emitting laser (VCSEL) array. We coupled the array to a matched microlens array to individually collimate light from each laser. We found the beam divergence of the collimated array to be 1.6/spl deg/ (1/e2) for the entire array. Using a 1-cm diameter F2 lens, we were able to focus the collimated beams to a spot of 400 /spl mu/m in diameter and to couple more than 75% of the array power into a 1-mm core fiber. Our results show that it is possible to uniformly bond large area VCSEL arrays to heat sinks, and to collimate light from each element into parallel beams using a single 2-D microlens array. Our results also show that the brightness of the focused beam can be further increased with a lens to near 10/sup 5/-W/cm/sup 2/ Steradian, a level that is useful for many high-power applications.
机译:在这封信中,我们演示了1 cm / spl次/ 1 cm单片二维(2D)垂直腔面发射激光器(VCSEL)阵列的制造和粘接。我们将阵列耦合到匹配的微透镜阵列,以分别准直来自每个激光器的光。我们发现准直阵列的光束发散度对于整个阵列为1.6 / spl deg /(1 / e2)。使用直径为1厘米的F2透镜,我们能够将准直光束聚焦到直径为400 / splμm/ m的点,并将超过75%的阵列功率耦合到1毫米的芯光纤中。我们的结果表明,可以将大面积的VCSEL阵列均匀地粘合到散热器上,并使用单个2D微透镜阵列将来自每个元件的光准直成平行光束。我们的结果还表明,使用透镜可以将聚焦光束的亮度进一步提高到接近10 / sup 5 / -W / cm / sup 2 / Steradian,该水平可用于许多高功率应用。

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