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测试了Nd3+:GGG单晶在可见和近红外波段的吸收光谱,并分析指认了它的实验能级,通过从头计算的DV-Xα方法计算得到了它的晶体场参数和旋轨耦合参数.用Nd3+:GGG在77 K和300 K的156个、88个实验能级,拟合了它的自由离子参数和晶体场参数,均方根误差(即拟合精度)σ分别为15.79 cm-1和11.48 cm-1.结果表明晶体场参数的拟合结果和从头计算值符合的很好.最后比较了拟合得到的Nd3+:GGG和已报道Nd3+:YAG的自由离子参数和晶体场参数.

The absorption spectrum of Nd3+ ions doped into Gd3Ga5O12 (GGG) single crystal was analyzed in the visible and near infrared region. Its crystal-field and spin-orbit parameters were calculatedwith the DV-Xα method, which belongs to an ab initio calculation. Meanwhile, its free-ions and crystal-field parameters were also been fitted to the experimental energy Ievels in 300 K and 77 K with the root mean square deviation of 15.79 cm-1 and 11.48 cm-1, respectively. According to the crystal-field calculations,156 levels of Nd3+ ions in 77 K and 88 levels of Nd3+ ions in 300 K were assigned. The results indicated that the fitted and calculated crystal-field parameters by DV-Xα are consistent very well. Finally, the fitting results of free-ions and crystal-field parameters are compared with those already reported for Nd3+:YAG.

参考文献

[1] Lupei V.Self-quenching of Nd3+ emission in laser garnet crystals[J].Opt.Mater.,2001,16:137-142.
[2] May-Smith T C,Eason R W.Comparative growth study of garnet crystal films fabricated by pulsed la ser deposition[J].J.Cryst.Growth.,2007,308:382-390.
[3] Gruber J B,Hills M E,Morrison C A,et al.Absorption spectra and energy levels of Gd3+,Nd3+,and Cr3+ in the garnet Gd3Sc2Ga2O12[J].Phys.Rev.B,1988,37(15):8564-8569.
[4] Allik T H,Morrison C A,Gruber J B,et al.Crystallography,spectroscopic analysis,and lasing properties of Nd3+:Y3Sc2Al3O12[J].Phys.Rev.B,1990,41(1):21-24.
[5] Rukmini E,Jayasankar C K,Reid M F.Correlation-crystal-field analysis of Nd3+(4f3) energy-level structures in various hosts[J].J.Phys.:Condens.Matter.,1994,6:5919-5922.
[6] Rudowicz C,Chua M,Reid M F.On the standardization of crystal-field parameters and the multiple correlated fitting technique:Applications to rare-earth compounds[J].Physica B,2000,291:327-336.
[7] Ning L X,Tanner P A,Harutunyan V V,et al.Luminescence and excitation spectra of YAG:Nd3+ excited by synchrotron radiation[J].J.Lumin.,2007,127:397-402.
[8] Slater J C.A simplification of the Hartree-Fock method[J].Phys.Rev.,1951,81:385-390.
[9] Ellis D E,et al.Discrete variational method for the energy-band problem with general crystal potentials[J].Phys.Rev.B,1970,2:2887-2898.
[10] Rosen A,Ellis D E.Relativistic molecular calculations in the Dirac-Slater model[J].J.Chem.Phys.,1975,62(8):3039-3042.
[11] Christiane G(o)rller-Walrand,Koen Binnemans.In:K.A.Gschneidner,Jr.and L.Eyring.Handbook on the Physics and Chemistry of Rare Earths[M].Amsterdam,New York,Oxford:North-Holland Publishing Company,1996:143-152.
[12] Karbowiak M,Edelstein N M,Drozdzynski J,et al.Spectroscopic studies and dynamics of Nd3+ ions in RbY2Cl7single crystals.PartⅡ.Crystal-field analysis[J].Chem.Phys.,2002,277:362-363.
[13] Xia S D.Group Theory and Spectroscopy[M].Beijing:Science Press,1994:262-283 (in Chinese).
[14] Newman D J,Betty Ng.Crystal Field Handbook[M].Cambridge University Press,2000:43.
[15] Holsa J,Korventausta J,Lamminmaki R J,et al.Analysis of the energy level scheme of Nd3+ in NdOBr[J].Ann.Chim.Sci.Mat.,1998,23:281-283.
[16] Reid M F,Duan C K,Zhou H W.Crystal-field parameters from ab initio calculations[J].J.Alloys Compd.,2009,488:591-594.
[17] Elisabeth Antic-Fidancev,Jorma Holsa,Mika Lastusaari.Crystal field energy levels of Eu3+ and Yb3+ in the C2and S6 sites of the cubic C-type R2O3[J].J.Phys.:Condens.Matter.,2003,15:863-865.
[18] Kaminskii A A.Crystalline Lasers:Physical Processes and Operating Schemes[M].1996:149.
[19] Da Gama A A S,De S(A)Gilberto F.Energy levels of Nd3+ in LiYF4[J].J.Chem.Phys.,1981,75(6):2585.
[20] Burdick G W,Jayasankar C K,Richardson F S,et al.Energy-level and line-strength analysis of optical transitions between Stark levels in Nd3+:Y3Al5O12[J].Phys.Rev.B,1994,50(22):16315.
[21] Nekvasil V.The crystal field for Nd3+ in garnets[J].Phys.Status Solidi B,1978,87:317-319.
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