CsCdBr3 has a quasi-linear crystal structure. It consists of covalently bound [CdBr]6 4- chains separated by chains of Cs+ ions. The trivalent rare-earth (RE) ions substitute for divalent Cd ions forming predominantly pair centers of the type RE3+-(Cd vacancy)-RE3+. A minority of RE ions forms "single-ion" centers with more distant charge compensation. The electronic structure around the band gap is determined by the [CdBr]6 4- octahedra. The lowest excitonic states of the lattice are charge-transfer states of these octahedra. At low temperatures they form self-trapped excitons which become mobile around 80 K. In addition we find defect-localized excitons at the RE pairs and single ions with slightly modified spectra. There is a strong ener...
Electron paramagnetic resonance (EPR), optical absorption, fluorescence, and excitation spectra of C...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...
CsCdBr3 has a quasi-linear crystal structure. It consists of covalently bound [CdBr]6 4- chains sepa...
CsCdBr3 has a quasi-linear crystal structure. It consists of covalently bound [CdBr]6 4- chains sepa...
CsCdBr3 has a quasi-linear crystal structure. It consists of covalently bound [CdBr]6 4- chains sepa...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
In CsCdBr3, Tm3+ substitutes for Cd2+. It predominately forms symmetric dimer centers and single-ion...
Polarized infrared reflectivity spectra of CsCdBr3 crystal were measured at temperatures 20 and 300 ...
Electron paramagnetic resonance (EPR), optical absorption, fluorescence, and excitation spectra of C...
Electron paramagnetic resonance (EPR), optical absorption, fluorescence, and excitation spectra of C...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...
Electron paramagnetic resonance (EPR), optical absorption, fluorescence, and excitation spectra of C...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...
CsCdBr3 has a quasi-linear crystal structure. It consists of covalently bound [CdBr]6 4- chains sepa...
CsCdBr3 has a quasi-linear crystal structure. It consists of covalently bound [CdBr]6 4- chains sepa...
CsCdBr3 has a quasi-linear crystal structure. It consists of covalently bound [CdBr]6 4- chains sepa...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
CsCdBr3 crystallizes in the quasi-linear CsNiCl3 structure. It possesses linear chains of [CdBr6]4- ...
In CsCdBr3, Tm3+ substitutes for Cd2+. It predominately forms symmetric dimer centers and single-ion...
Polarized infrared reflectivity spectra of CsCdBr3 crystal were measured at temperatures 20 and 300 ...
Electron paramagnetic resonance (EPR), optical absorption, fluorescence, and excitation spectra of C...
Electron paramagnetic resonance (EPR), optical absorption, fluorescence, and excitation spectra of C...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...
Electron paramagnetic resonance (EPR), optical absorption, fluorescence, and excitation spectra of C...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...
CsCdBr3 : Nd3+ crystals have been studied by laser selective excitation and time resolved spectrosco...