Fabrication and characterization of optical planar waveguides activated by erbium ions for 1.5μm applications

被引:4
|
作者
Chiasera, A [1 ]
Ferrari, M [1 ]
Zampedri, L [1 ]
Mattarelli, M [1 ]
Montagna, M [1 ]
Portales, H [1 ]
Tosello, C [1 ]
Dire, S [1 ]
Pelli, S [1 ]
Righini, GC [1 ]
机构
[1] CNR, IFN, Inst Photon & Nanotechnol CSMFO Grp, I-38050 Povo, Italy
关键词
sol-gel planar waveguides; rf sputtering waveguides; channel waveguides; erbium; ytterbium; silica-titania; silica-hafnia; optical properties; luminescence;
D O I
10.1117/12.549920
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Recent results obtained for SiO2 - HfO2: Er3+ and SiO2 - TiO2: Er3+ - Yb3+ waveguides are presented. (100-x)SiO2 x HfO2 (x = 10, 20, 30, 40 mol) planar waveguides, doped with 0.01 and 0.3 mol % Er3+ ions were prepared by sot-gel route, using dip-coating deposition on v-SiO2 substrates. The waveguides were characterized by m-line, Raman and photoluminescence spectroscopy. The spectral shape of the band assigned to the I-4(13/2) --> I-4(15/2) transition does not change practically with the hafnium and erbium content. The I-4(13/2) level decay curves present a single-exponential profile, with a lifetime between 5.5 and 7.1 ms, for the 0.3 mol% doped samples, and between 8.5 and 6.6 ms for the 0.01 mol% doped samples. The SiO2 - TiO2: Er3+ - Yb3+ waveguides were prepared by rf-sputtering technique. All waveguides were single-mode at 1550 nm. The losses, for the TE0 mode, were evaluated at 632.8 and 1300 nm and an attenuation coefficient equal or lower than 0.2 dB/cm was measured both at 632.8 nm and 1300 nn. The emission of I-4(13/2) --> I-4(15/2) of Er3+ ion transition was observed upon excitation in the TE0 mode at 981 and 514.5 nm. Back energy transfer from Er3+ to Yb3+ was demonstrated by measurement of Yb3+ emission upon Er3+ excitation at 514.5 nn. Photoluminescence excitation spectroscopy was used to obtain information about the effective excitation efficiency of Er3+ ions by co-doping with Yb3+ ions.
引用
收藏
页码:574 / 584
页数:11
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