Femtosecond-Laser-Written Waveguide Lasers at ∼2 μm

X. Mateos, E. Kifle, P. Loiko, C. Romero, J. D. de Aldana, A. Ródenas, S. Y. Choi, J. Bae, F. Rotermund, U. Griebner, V. Petrov, M. Aguiló, F. Díaz
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Abstract

In this work, we review our recent results on fabrication, optical characterization and continuous-wave and passively Q-switched 2μm laser operation of active waveguides (WGs) produced by femtosecond direct laser writing (fs-DLW) in thulium and holmium doped low-symmetry (monoclinic) crystals. Fs-DLW was performed by 120-fs / 1-kHz pulses at 795 nm [1]. Various depressed-index photonic micro-structures were fabricated, Fig. 1, such as buried channel WGs with circular and hexagonal (lattice-like) cladding, surface WGs with a half-ring cladding, and straight WGs and Y-branch splitters with a rectangular cross-section. The WG core size was in the range 40–100 μm, comprising both fundamental- and multi-mode WGs.
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飞秒激光写入波导激光器在~ 2 μm
在这项工作中,我们回顾了最近在掺铥和钬低对称(单斜)晶体中飞秒直接激光写入(fs-DLW)产生的有源波导(WGs)的制造、光学表征以及连续波和被动调q 2μm激光操作方面的研究成果。Fs-DLW采用120-fs / 1- khz脉冲,波长为795 nm[1]。我们制作了各种各样的低折射率光子微结构,如图1所示,如圆形和六边形(晶格状)包层的埋沟道光子光栅,半环形包层的表面光子光栅,以及矩形截面的直波导光子光栅和y分支分光器。WG芯尺寸在40-100 μm范围内,包括基模和多模WG。
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