We study the absorption-dispersion process and group index of weak probe field in a four-level Er^3+:YAG crystal.We find that the Er^3+ion concentration and incoherent pumping field can influence the absorption-dis...We study the absorption-dispersion process and group index of weak probe field in a four-level Er^3+:YAG crystal.We find that the Er^3+ion concentration and incoherent pumping field can influence the absorption-dispersion process and group index of weak probe field. Moreover, our results show that Er^3+ion concentration plays a major role in lasing without inversion and absorption with inversion.展开更多
Er^3+-modified 0.68 Pb(Mg(1/3)Nb(2/3))O3-0.32 PbTiO3(PMN-32 PT) single crystals were grown by using the flux method. The growth mechanism of the crystal and influences of Er^3+ ions on phase structure,electr...Er^3+-modified 0.68 Pb(Mg(1/3)Nb(2/3))O3-0.32 PbTiO3(PMN-32 PT) single crystals were grown by using the flux method. The growth mechanism of the crystal and influences of Er^3+ ions on phase structure,electrical and optical properties were investigated. Results reveal that the crystals are still pure perovskite structure with Er3+ ions doping, but lattice enlarges slightly. The coercive electric field is increased from 4.83 to 6.37 kV/cm for [100]-oriented crystals comparing to undoped PMN-32 PT single crystals.Moreover, the crystal exhibits upconversion emission properties. Green(531 and 552 nm) and red(670 nm) emission bands are recorded under the excitation of 980 nm diode laser, which correspond to the ^2 H(11/2)→^4 I(15/2), ^4 S(3/2)→^4 I(15/2) and ^4 F(9/2)→^4 I(15/2) transitions of Er^3+ ions. Our results show the feasibility of using this crystal in photoelectric multifunctional devices.展开更多
文摘We study the absorption-dispersion process and group index of weak probe field in a four-level Er^3+:YAG crystal.We find that the Er^3+ion concentration and incoherent pumping field can influence the absorption-dispersion process and group index of weak probe field. Moreover, our results show that Er^3+ion concentration plays a major role in lasing without inversion and absorption with inversion.
基金Project supported by the National Basic Research Program of China(973 Program)(2013CB632900)the National Natural Science Foundation of China(51472197)+2 种基金the Shaanxi Provincial Education Department(14JK1333)the Key Laboratory of Optoelectronic Materials Chemistry and Physics,Chinese Academy of Sciences(2016DP173016)Shaanxi Key Laboratory of Optoelectronic Functional Materials and Devices(2015SZSJ-59-5)
文摘Er^3+-modified 0.68 Pb(Mg(1/3)Nb(2/3))O3-0.32 PbTiO3(PMN-32 PT) single crystals were grown by using the flux method. The growth mechanism of the crystal and influences of Er^3+ ions on phase structure,electrical and optical properties were investigated. Results reveal that the crystals are still pure perovskite structure with Er3+ ions doping, but lattice enlarges slightly. The coercive electric field is increased from 4.83 to 6.37 kV/cm for [100]-oriented crystals comparing to undoped PMN-32 PT single crystals.Moreover, the crystal exhibits upconversion emission properties. Green(531 and 552 nm) and red(670 nm) emission bands are recorded under the excitation of 980 nm diode laser, which correspond to the ^2 H(11/2)→^4 I(15/2), ^4 S(3/2)→^4 I(15/2) and ^4 F(9/2)→^4 I(15/2) transitions of Er^3+ ions. Our results show the feasibility of using this crystal in photoelectric multifunctional devices.