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Lanthanide-Activated Fiber Materials for Broadband Optical Amplifiers
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作者 Yong Gyu Choi Bong Je Park +3 位作者 Doo Hee Cho Hong Seok Seo Myung Hyun Lee Kyong Hon Kim 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期74-75,共2页
Some intra-4/-configurational transitions of lanthanide, of which radiative emissions cover in wavelengths the optical communication window of the currently available OH-free silica-based line fibers, are discussed in... Some intra-4/-configurational transitions of lanthanide, of which radiative emissions cover in wavelengths the optical communication window of the currently available OH-free silica-based line fibers, are discussed in terms of relationship between their emission properties and host fiber materials. 展开更多
关键词 for be THAN of in as Lanthanide-Activated Fiber Materials for broadband optical amplifiers that LINE EDFA
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Yb^(3+)/Er^(3+)-Codoped Tungsten-Tellurite Glasses for Broadband Optical Amplifier
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作者 Jiacheng Li Hefang Hu Fuxi Gan Shanghai Institute of Optics and Fine mechanics, CAS, P. R. China 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期82-83,共2页
Emission spectra and fluorescence lifetime of Er3+ in Yb3+/Er3+-codoped tungsten-tellurite glasses were measured. Effects of Yb3+concentration on 1.5μm emission intensity and bandwidth of Er3+ were investigated and a... Emission spectra and fluorescence lifetime of Er3+ in Yb3+/Er3+-codoped tungsten-tellurite glasses were measured. Effects of Yb3+concentration on 1.5μm emission intensity and bandwidth of Er3+ were investigated and a FWHM of 81 nm was demonstrated. 展开更多
关键词 for as ER Codoped Tungsten-Tellurite Glasses for broadband optical amplifier FWHM were YB
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Enhanced 1.32 μm fluorescence and broadband amplifying for O-band optical amplifier in Nd^(3+)-doped tellurite glass
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作者 周自忠 周明翰 +2 位作者 苏秀娥 程盼 周亚训 《Optoelectronics Letters》 EI 2017年第1期54-57,共4页
WO_3 oxides with relatively high phonon energy and different concentrations were introduced into the Nd^(3+)-doped tellurite-based glasses of Te O_2-Zn O-Na_2 O to improve the 1.32 μm band fluorescence emission. The ... WO_3 oxides with relatively high phonon energy and different concentrations were introduced into the Nd^(3+)-doped tellurite-based glasses of Te O_2-Zn O-Na_2 O to improve the 1.32 μm band fluorescence emission. The absorption spectra,Raman spectra,1.32 μm band fluorescence spectra and differential scanning calorimeter(DSC) curves were measured,together with the Judd-Ofelt intensity parameters,stimulated emission and gain parameters were calculated to evaluate the effects of WO_3 amount on the glass structure and spectroscopic properties of 1.32 μm band fluorescence. It is shown that the introduction of an appropriate amount of WO_3 oxide can effectively improve the 1.32 μm band fluorescence intensity through the enhanced multi-phonon relaxation(MPR) processes between the excited levels of Nd^(3+). The results indicate that the prepared Nd^(3+)-doped tellurite glass with an appropriate amount of WO_3 oxide is a potential gain medium applied for the O-band broad and high-gain fiber amplifier. 展开更多
关键词 doped tellurite glass m fluorescence and broadband amplifying for O-band optical amplifier in Nd Enhanced 1.32
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Designing broadband fiber optic parametric amplifier based on near-zero single ZDW PCF with ultra-flat nature 被引量:1
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作者 Partha Sona Maji Ritwick Das 《Chinese Optics Letters》 SCIE EI CAS CSCD 2017年第7期31-35,共5页
We propose a broadband fiber optic parametric amplifier(FOPA) based on a near-zero ultra-flat dispersion profile with a single zero-dispersion wavelength(ZDW) by using a selective liquid infiltration technique.The... We propose a broadband fiber optic parametric amplifier(FOPA) based on a near-zero ultra-flat dispersion profile with a single zero-dispersion wavelength(ZDW) by using a selective liquid infiltration technique.The amplifier gain and bandwidth is investigated for a variety of fiber lengths, pump power, and operating wavelengths. It is observed that sufficient peak gains and broader bandwidths can be achieved with a small negative anomalous dispersion(β2≤ 0) and a positive value of the 4th-order dispersion parameter(t β4)around the pump. We can optimize an FOPA with a bandwidth of more than 220 nm around the communications wavelength. 展开更多
关键词 amplifier broadband optic parametric bandwidth infiltration anomalous optimize matching gains
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