AbstractThe properties of the highly-doped Nd3+ (1-4 at. %):YAG optical ceramics obtained by reactive sintering procedure are reported. Absorption spectra of the various Nd3+ concentration samples were measured in the wide spectral range of 250–1200nm. At least 11 lines of various intensities were found in the range 780–820nm where absorption transitions from ground state to 4F9/2 and 4F5/2 occur. Luminescence spectra were measured in 800-1200nm wavelength range where main lasing radiation transitions took place. It was found that lasing properties manifest the optical efficiency 16, 18 and 9% for the samples with Nd3+ concentration of 1, 2 and 4 at. %, respectively
采用燃烧法制备了Nd:YSAG粉体,经过成型、素烧,最终在氢气气氛中烧结制备了Nd:YSAG透明陶瓷.测试结果表明,Nd:YSAG透明陶瓷具有荧光谱线较宽,荧光寿命较长的特点.激光实验得到的激光输出,...
Neodymium-doped yttrium aluminum garnet (Nd:YAG) ceramics with different Al2O3/Y2O3 deviation levels...
In this work we performed a thorough spectroscopic and thermo-optical investigation of yttrium alumi...
Abstract. Optical absorption, emission spectra have been measured for polycrystalline Nd-doped Y3Al5...
International audienceIn this work, a comparative study of reactive sintering and optical properties...
Nd3+-doped Y2-2x La-2x O-3 (x = 0.08) transparent ceramics were fabricated by conventional fabricati...
Solid state laser ceramics was discovered in the 1960s and through the advancement of technology, th...
International audienceRare-earth doped garnets (YAG:Nd, YAG:Yb, YSAG:Nd, GGG:Nd) are usually used ma...
In this article, we report on the fabrication and optical properties of highly transparent yttria ce...
Transparent ceramics have been known to be one of the best material for solid state lasers applicati...
Tokyo University; Russian Foundation; Russian Academy of SciencesStimulated-emission spectroscopy me...
In this work, the absorption, fluorescence spectra, and fluorescence decay curve of Nd:Lu3Al5O12, i....
Solid-state lasers play a significant role in providing the technology necessary for active remote s...
Yb3+ doped YAG ceramics have been successfully fabricated using a vacuum reactive sintering method. ...
A transparent Tm:Lu3Al5O12 ceramic is fabricated by solid-state reactive sintering at 1830 °C for 30...
采用燃烧法制备了Nd:YSAG粉体,经过成型、素烧,最终在氢气气氛中烧结制备了Nd:YSAG透明陶瓷.测试结果表明,Nd:YSAG透明陶瓷具有荧光谱线较宽,荧光寿命较长的特点.激光实验得到的激光输出,...
Neodymium-doped yttrium aluminum garnet (Nd:YAG) ceramics with different Al2O3/Y2O3 deviation levels...
In this work we performed a thorough spectroscopic and thermo-optical investigation of yttrium alumi...
Abstract. Optical absorption, emission spectra have been measured for polycrystalline Nd-doped Y3Al5...
International audienceIn this work, a comparative study of reactive sintering and optical properties...
Nd3+-doped Y2-2x La-2x O-3 (x = 0.08) transparent ceramics were fabricated by conventional fabricati...
Solid state laser ceramics was discovered in the 1960s and through the advancement of technology, th...
International audienceRare-earth doped garnets (YAG:Nd, YAG:Yb, YSAG:Nd, GGG:Nd) are usually used ma...
In this article, we report on the fabrication and optical properties of highly transparent yttria ce...
Transparent ceramics have been known to be one of the best material for solid state lasers applicati...
Tokyo University; Russian Foundation; Russian Academy of SciencesStimulated-emission spectroscopy me...
In this work, the absorption, fluorescence spectra, and fluorescence decay curve of Nd:Lu3Al5O12, i....
Solid-state lasers play a significant role in providing the technology necessary for active remote s...
Yb3+ doped YAG ceramics have been successfully fabricated using a vacuum reactive sintering method. ...
A transparent Tm:Lu3Al5O12 ceramic is fabricated by solid-state reactive sintering at 1830 °C for 30...
采用燃烧法制备了Nd:YSAG粉体,经过成型、素烧,最终在氢气气氛中烧结制备了Nd:YSAG透明陶瓷.测试结果表明,Nd:YSAG透明陶瓷具有荧光谱线较宽,荧光寿命较长的特点.激光实验得到的激光输出,...
Neodymium-doped yttrium aluminum garnet (Nd:YAG) ceramics with different Al2O3/Y2O3 deviation levels...
In this work we performed a thorough spectroscopic and thermo-optical investigation of yttrium alumi...