Simpson D A, Gibbs W E, Collins S F, Blanc W, Dussardier B, Monnom G, Peterka P, Baxter G W
Centre for Telecommunications and Micro-Electronics, Optical Technology Research Laboratory, Victoria University, Victoria 8001, Australia.
Opt Express. 2008 Sep 1;16(18):13781-99. doi: 10.1364/oe.16.013781.
The spectroscopic properties of Tm(3+)/Yb(3+) co-doped silica fibers under excitation at 980 nm are reported. Three distinct up-conversion fluorescence bands were observed in the visible to near infra-red regions. The blue and red fluorescence bands at 475 and 650 nm, respectively, were found to originate from the (1)G(4) level of Tm(3+). A three step up-conversion process was established as the populating mechanism for these fluorescence bands. The fluorescence band at 800 nm was found to originate from two possible transitions in Tm(3+); one being the transition from the (3)H(4) to (3)H(6) manifold which was found to dominate at low pump powers; the other being the transition from the (1)G(4) to (3)H(6) level which dominates at higher pump powers. The fluorescence lifetime of the (3)H(4) and (3)F(4) levels of Tm(3+) and (2)F(5/2) level of Yb(3+) were studied as a function of Yb(3+) concentration, with no significant energy back transfer from Tm(3+) to Yb(3+) observed.
报道了在980nm激发下Tm(3+)/Yb(3+)共掺杂石英光纤的光谱特性。在可见光到近红外区域观察到三个不同的上转换荧光带。分别在475和650nm处的蓝色和红色荧光带被发现源自Tm(3+)的(1)G(4)能级。建立了一个三步上转换过程作为这些荧光带的填充机制。在800nm处的荧光带被发现源自Tm(3+)中的两种可能跃迁;一种是从(3)H(4)到(3)H(6)多重态的跃迁,发现在低泵浦功率下占主导;另一种是从(1)G(4)到(3)H(6)能级的跃迁,在较高泵浦功率下占主导。研究了Tm(3+)的(3)H(4)和(3)F(4)能级以及Yb(3+)的(2)F(5/2)能级的荧光寿命随Yb(3+)浓度的变化,未观察到从Tm(3+)到Yb(3+)的明显能量反向转移。