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1.
The absorption spectrum of RbMnF3 and the excitation spectra of the system RbMgxMn1-xF3 at 10 K as well as the fluorescence spectra and lifetimes of Mn2+ in the systems RbMgxMn1-xF3 and KMgxMn1-xF3 in the region 10–300 K were measured. The lifetime and fluorescence temperature dependence suggest that the origin of the fluorescence occurs at Mn2+ sites slightly perturbed by impurity ions and that a non-radiative energy transfer mechanism is responsible for the observed thermal quenching. By using different Mn2+ concentrations in the above systems the dependence of the energy transfer on the Mn2+ concentration is shown. Finally, a preliminary observation on laser stimulated Mn2+ luminescence in the system RbMgxMn1-xF3 is reported.  相似文献   

2.
Spinel LiNixMn2−xO4 (x≤0.9) thin films were synthesized by a sol-gel method employing spin-coating. The Ni-doped films were found to maintain cubic structure at low x but to exhibit a phase transition to tetragonal structure for x≥0.6. Such cubic-tetragonal phase transition can be explained in terms of Ni3+(d7) ions with low-spin (t2g6,eg1) configuration occupying the octahedral sites of the compound, thus being subject to the Jahn-Teller effect. By X-ray photoelectron spectroscopy both Ni3+ and Ni2+ ions were detected where Ni2+ is more populated than Ni3+. Optical properties of the LiNixMn2−xO4 films were investigated by spectroscopic ellipsometry in the visible-ultraviolet range. The measured dielectric function spectra mainly consist of broad absorption structures attributed to charge-transfer transitions, O2−(2p)→Mn4+(3d) for 1.9 (t2g) and 2.8-3.0 eV (eg) structures and O2−(2p)→Mn3+(3d) for 2.3 (t2g) and 3.4-3.6 eV (eg) structures. Also, sharp absorption structures were observed at about 1.6, 1.7, and 1.9 eV, interpreted as being due to d-d crystal-field transitions within the octahedral Mn3+ ion. In terms of these transitions, the evolution of the optical absorption spectrum of LiMn2O4 by Ni doping could be explained and the related electronic structure parameters were obtained.  相似文献   

3.
The effect of pressure on the optical absorption edge of mixed crystals Cd1-xMnxTe with different manganese concentrations is reported. The observed absorption edge shifts to higher energy with increasing pressure at a rate of α=7?8×10?3 eV/kbar and a second order coefficient of β=-4×10?5 eV/kbar2 for x<0.5, to lower energy with increasing pressure at a rate of α=-5.0 ×10?3 eV/kbar for x?0.5. A phase transition occurs for all the samples studied. The absorption edge of the new phase is outside the wavenumber range of the instrument. The physical origins of different pressure coefficients are discussed in the light of the deformation potentials of energy band states and the hybridization of the Mn2+ 3d levels with the p-like states in the valence band.  相似文献   

4.
Fluorescent characteristics of a series of powder CaF2: Mn phosphors (from 0.01 to 2.47 wt. % of Mn in the mixture) excited by VUV radiation with quantum energies up to 14 eV at 293 K and up to 12 eV at 85 K are measured. Narrow excitation bands of Mn2+ centers found at 7.9 and 8.6 eV (at 293 K) are assigned to partially forbidden transitions of electrons from the ground state 6 S split by the crystalline field (10 Dq=0.71 eV from the literature) in two sublevels to the excited level corresponding to the 6 D term of a free Mn2+ ion (3d 5 → 3d 44s transitions). A wide nonelementary excitation band in the region of 9.1–10.3 eV is interpreted as photogeneration of near-activator D-excitations: allowed transitions of electrons from levels that are split from the top of the valence band under the influence of an impurity ion to the free 4s-orbital of a Mn2+ ion. Channels of energy transport in the CaF2: Mn system are briefly analyzed.  相似文献   

5.
Migration of small polarons in λ-MnO2, Li0.5Mn2O4 and LiMn2O4 is studied via first principles calculations. Migration energy barriers of single small polaron migrations in λ-MnO2, Li0.5Mn2O4 and LiMn2O4 are 0.22 eV, 0.45 eV and 0.35 eV, respectively. The energy level changes of Mn-3d states along the polaron migration path are analyzed in detail. Results indicate that the activation energy barrier of polaron migration is strongly associated with the energy level shift of Mn-3dz2 orbital, which is dependent on the short range structural arrangement of Mn3+/Mn4+ in the crystal. The electrical conduction properties of LixMn2O4 at room temperature are then discussed.  相似文献   

6.
考虑晶体CsMnBr3中Mn2+离子所处的低对称畸变晶场——D3d对称,用赵等人提出的络合物中Mn2+的SCF d-轨道,研究了MnBr64-中Mn2+的d电子结构以及吸收光谱和晶体结构之间的关系,CsMnBr3晶体吸收光谱在18280cm-1,2170Ocm-1,26300cm-1和29650cm-1等处的分裂得到了理论解释,理论和实验符合很好。 关键词:  相似文献   

7.
The ZnGa2O4:Mn2+, Cr3+ phosphors show three colors; the blue band of 380 nm from the charge transfer between Ga-O, the green band of 505 nm from Mn2+ and the red band of 705 nm from Cr3+. As a variation of Mn2+ or Cr3+ concentrations in ZnGa2O4:Mn2+, Cr3+, the relative emission intensity can be tuned. This phenomenon is explained in terms of the energy transfer based on four factors: the spectral overlap between the energy donors (Ga-O) and the energy accepters of Mn2+ or Cr3+, the absorption cross section of the energy accepters, the distance between them, and the decay time of the energy donors. ZnGa2O4:0.0025Mn2+, 0.010Cr3+ shows the CIE coordinates of x=0.4014, y=0.3368, which is a pure white light. The single-phased full-color emitting ZnGa2O4:Mn2+, Cr3+ phosphors can be applied to illumination devices.  相似文献   

8.
In manganese-doped PbWO4 crystals, low-intensity signals of triclinic clusters Mn4+-V O and Fe3+-V Pb have been revealed in addition to signals of Mn2+ tetragonal centers. The Mn4+-V O cluster is formed by a Mn4+ ion in the W6+ position, which is associated with a vacancy of the nearest neighbor O2?ion, and the Fe3+-V Pb cluster consists of a Fe3+ ion substituting for Pb2+ with a local compensation of by a lead vacancy. It has been shown that, in PbWO4: Mn, there is also a small amount of Mn4+ tetragonal centers located in the Pb2+ position with a nonlocal compensation of an excess charge.  相似文献   

9.
We explore the role of electronic and ionic polarization energies in the physics of “colossal” magnetoresistive (CMR) materials. We use the Mott-Littleton approach to evaluate polarization energies in the LaMnO3 lattice associated with holes localized on both the Mn3+ cation and the O2?anion. The full (electronic and ionic) lattice relaxation energy for a hole localized at the O site is estimated at 2.4 eV, which is appreciably greater than that of 0.8 eV for a hole localized at the Mn site, indicating a strong electron-phonon interaction in the former case. The ionic relaxation around the localized holes differs for anion and cation holes. The relaxation associated with Mn4+ is approximately isotropic, whereas ionic displacements around O? holes show axial symmetry with the axis directed towards the apical oxygens. Using the Born-Haber cycle, we examine thermal and optical energies of the hole formation associated with the electron ionization from Mn3+, O2?, and La3+ions in the LaMnO3 lattice. For these calculations, we derive a phenomenological value for the second electron affinity of oxygen in the LaMnO3 lattice by matching the optical energies of the La4+ and O? hole formation with maxima of binding energies in the experimental photoemission spectra. The calculated thermal energies predict that the electronic hole is marginally more stable in the Mn4+ state in the LaMnO3 host lattice, but the energy of a hole in the O? state is only higher by a small amount, 0.75 eV, suggesting that both possibilities should be treated seriously. We examine the energies of a number of fundamental optical transitions, as well as those involving self-trapped holes of Mn4+ and O? in the LaMnO3 lattice. The reasonable agreement of our predicted energies, linewidths, and oscillator strengths with experimental data leads us to plausible assignments of the optical bands observed. We deduce that the optical band near 5 eV is associated with the O(2p)-Mn(3d) transition of a charge-transfer character, whereas the band near 2.3 eV is rather associated with the presence of Mn4+ and/or O? self-trapped holes in the nonstoichiometric LaMnO3 compound.  相似文献   

10.
Electron energy-loss spectroscopy of ~ 200 eV electrons has been applied to the study of the electronic states of clean NiO (100) surfaces. Initial attempt has been made on the identification of observed peaks, and they are attributed to the one-electronic transitions (O2-2p → Ni2+3d, 4s and 4p; Ni2+3d → 4p, 3p → 3d and 4s), and the collective excitations (bulk plasmons of O2-2p, Ni2+3d electrons, and coupled 2p and 3d electrons).  相似文献   

11.
We report optical absorption measurements on Zn1-xMnxTe at 300K, 77K, and LHe temperatures. In an x ~ 0.6 sample, new absorption bands are found at 2.605 eV and 2.745 eV, together with two lower energy bands seen also in an x ~ 0.1 sample. All bands are attributed to intra-ion transitions of Mn2+ in the 3d5 configuration.  相似文献   

12.
Multi-color long lasting phosphorescent (LLP) phenomenon in β-Zn3(PO4)2:Mn2+,Zr4+ was systematically investigated. It is found that the red (λEm=616 nm) LLP performance of Mn2+ such as brightness and duration is largely improved, and that the blue (λEm=475 nm) LLP of Zr4+ with lower intensity appears when Zr4+ ions are co-doped into the matrix. The fluorescence, phosphorescence and thermoluminescence (TL) spectra show that Mn2+ ion is solely expected as a luminescent center, while Zr4+ ion not only acts as a luminescent center, but also induces an electron trap (TrapZr) associated with a TL peak at 344 K. The trap depth for TrapZr is 0.25 eV, while that for the intrinsic trap is 0.38 eV, associated with a dominant peak at 385 K for Zn3(PO4)2:Mn2+. The Zr4+-induced trap with suitable depth is responsible for the improvement of the red LLP of Mn2+ ion and the appearance of the blue LLP of Zr4+ ion. The LLP mechanism is also investigated.  相似文献   

13.
The optical properties of thick sputtered films (~30μ) of amorphous Ge, grown with different substrate temperatures (0ˇ-T sˇ-350°C), were obtained between 0·05 and 4·5 eV by a combination of reflectance, transmittance and ellipsometric measurements. The refractive index at 0·15 eV decreases monotonically with increasing T s, or equivalently, with increasing density, and is 4·13±0·05 eV in the highest density films. The absorption edge is approximately exponential (102?α?104 cm?1) but shifts monotonically to higher energy and increases in slope with increasing T s. Similarly, the peak in ε2 grows by about 10% and shifts by about 0·15 eV to higher energies, reaching a maximum of about 23 at 2·90±0·05 eV in the high density films. The peak in the transition strength ω2ε2 occurs at 4·2±0·2 eV in all films, but increases in magnitude with increasing T s. The sum rules for n eff(ω) and ε0,eff(ω) are evaluated for ▄ω?5 eV and vary monotonically with T s. These trends are neither compatible with Galeener's void resonance theory nor with changes in the oxygen content of the films, determined by the examination of absorption peaks at 0·053 eV and 0·09 eV. An explanation, suggested here and expanded in I, is based on the observed changes in the structure of the network and voids.  相似文献   

14.
15.
Optical absorption and luminescence of Zn1-xMnxSe (0 < x < 0.53) is measured at T = 10, 77 and 300 K below fundamental absorption edge. Three absorption and one luminescence bands are observed and are attributed to the intra-ion transitions of Mn2+ in 3d5 configuration. Crystal field parameter Dq and Racah parameters B and C are derived as well as stabilization energy.  相似文献   

16.
A linear relationship between the critical temperatures Tmax and Tmin in the temperature dependences of the resistance of La0.6Sr0.2Mn1.2O3 single-crystal films that have a mesoscopic irregularity (metallic clusters in an insulating matrix) is found. A correlation between the atomic order and electronic structure of the films is studied by taking X-ray diffraction patterns and optical absorption spectra. It is shown that a rise in Tmax and a simultaneous decrease in Tmin cause correlated local changes in cluster areas of the structure. Namely, the volume occupied by a family of Mn-O planes with large interplanar spacings (d=2.04–2.08 Å) shrinks, while the volume occupied by a family of closer spaced (d=1.90–1.99 Å) planes grows. In the electronic subsystem, the density of states at ?ω=1.5 and 2.4 eV, which are due to Mn3+ and Mn4+ ions, increases, and the contribution from Mn2+ states at ?ω=0.9 eV decreases. As the charge states associated with Mn3+ and Mn4+ ions become dominant, the Mn-O binding energy grows. As a result, the contribution of the structural states with smaller d increases, thereby raising the density of states in the electronic subsystem at energies between 0.5 and 2.7 eV. The effect of self-organization in the multicomponent LaSrMnO system shows up in the transition from the heavily distorted rhombohedral to the less distorted orthorhombic structure.  相似文献   

17.
The equilibrium and photoinduced absorption spectra of copper-and silver-doped Bi12SiO20 crystals are studied. It is demonstrated that the impurity absorption is due to Ag2+, Ag+, Cu3+, Cu2+, and Cu+ ions occupying almost octahedral Bi3 positions. A mechanism of photochromism is suggested, involving changes in the charge states of copper and silver impurity ions according to schemes Cu2+-e → Cu3+ and Ag+-e → Ag2+.  相似文献   

18.
Optical transitions in normal-spinel Co3O4 have been identified by investigating the variation of its optical absorption spectrum with the replacement of Co by Zn. Three optical-transition structures were located at about 1.65, 2.4, and 2.8 eV from the measured dielectric function of Co3O4 by spectroscopic ellipsometry. The variation of the absorption structures with the Zn substitution (ZnxCo3−xO4) can be explained in terms of charge-transfer transitions involving d states of Co ions. The 1.65 eV structure is assigned to a d-d charge-transfer transition between the t2g states of octahedral Co3+ ion and t2 states of tetrahedral Co2+ ion, t2g(Co3+)→t2(Co2+). The 2.4 and 2.8 eV structures are interpreted as due to charge-transfer transitions involving the p states of O2− ion: p(O2−)→t2(Co2+) for the 2.4 eV absorption and p(O2−)→eg(Co3+) for the 2.8 eV absorption. The observed gradual reduction of the 1.65 and 2.4 eV absorption strength with the increase of the Zn composition for ZnxCo3−xO4 can be explained in terms of the substitution of the tetrahedral Co2+ sites by Zn2+ ions. The crystal-field splitting ΔOh between the eg and the t2g states of the octahedral Co3+ ion is estimated to be 2 eV.  相似文献   

19.
20.
The defect (Mn2+,Ni2+,Fe2+) induced magnon gap modes in the layered antiferromagnets K2CoF4 and Rb2CoF4 were investigated with the methods of FIR absorption-and IR emission spectroscopy. The anisotropic exchange-parameters describing the strongly localized Mn2+ spin excitations far below the host lattice magnon band and the Ni2+ excitations in the vacinity of this band are presented. In the diluted system K2Co1-cMncF4 localized Mn2+ cluster modes up to about C≈0.1 were observed. The excitation energy of these modes can only be explained by assuming an anisotropic Mn2+-Mn2+ exchange which is in contrast to the pure isomorphous system K2MnF4. In the spin mismatch system K2CoF4: Fe the magnetic moments of the isolated Fe2+ impurities are pulled from the plane perpendicular to the c-axis and aligned parallel to the easy axis of the magnetic crystal.  相似文献   

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