Sun Haibin, Xiao Jiamin, Zhu Suwan, Hu Yue, Feng Guojin, Zhuang Jun, Zhao Li
Collaborative Innovation Center of Advanced Microstructures, State Key Laboratory of Surface Physics and Department of Physics, Fudan University, Shanghai 200433, China.
Department of Optical Science and Engineering, Fudan University, Shanghai 200433, China.
Materials (Basel). 2017 Mar 28;10(4):351. doi: 10.3390/ma10040351.
Femtosecond (fs)-laser hyperdoped silicon has aroused great interest for applications in infrared photodetectors due to its special properties. Crystallinity and optical absorption influenced by co-hyperdoped nitrogen in surface microstructured silicon, prepared by fs-laser irradiation in gas mixture of SF₆/NF₃ and SF₆/N₂ were investigated. In both gas mixtures, nitrogen and sulfur were incorporated at average concentrations above 10 atoms/cm³ in the 20-400 nm surface layer. Different crystallinity and optical absorption properties were observed for samples microstructured in the two gas mixtures. For samples prepared in SF₆/N₂, crystallinity and light absorption properties were similar to samples formed in SF₆. Significant differences were observed amongst samples formed in SF₆/NF₃, which possess higher crystallinity and strong sub-band gap absorption. The differing crystallinity and light absorption rates between the two types of nitrogen co-hyperdoped silicon were attributed to different nitrogen configurations in the doped layer. This was induced by fs-laser irradiating silicon in the two N-containing gas mixtures.
飞秒(fs)激光超掺杂硅因其特殊性能在红外光电探测器应用中引起了极大兴趣。研究了在SF₆/NF₃和SF₆/N₂气体混合物中通过飞秒激光辐照制备的表面微结构硅中共超掺杂氮对结晶度和光吸收的影响。在两种气体混合物中,氮和硫在20 - 400 nm表面层中的平均掺入浓度均高于10原子/cm³。在两种气体混合物中制备的微结构样品观察到不同的结晶度和光吸收特性。对于在SF₆/N₂中制备的样品,结晶度和光吸收特性与在SF₆中形成的样品相似。在SF₆/NF₃中形成的样品之间观察到显著差异,这些样品具有更高的结晶度和强子带隙吸收。两种类型的氮共超掺杂硅之间不同的结晶度和光吸收速率归因于掺杂层中不同的氮构型。这是由飞秒激光在两种含氮气体混合物中辐照硅引起的。