MgAl_2S_4, CaAl_2S_4, MgAl_2S_4: Er~3+ and CaAl_2S_4 : Er~3+single crystals were grown by the chemical transport reaction method.The single crystals crystallized in an orthorhombic structure. Thesingle crystals had the direct energy band structure and theiroptical energy gaps were 4.334 eV 4.213 eV 4.835 eV and 4.716 eV forthe MgAl_2S_4, MgAl_2S_4 : Er~3+, CaAl_2S_4, and CaAl_2S_4 : Er~3+single crystals, respectively, at 13 K. Sharp emission peaks appearedin the MgAl_2S_4 : Er~3+ and CaAl_2S_4 : Er~3+ single crystals, andthey were interpreted to originate from the Er~3+ ion substitutedMg~2+ and Ca~2+ ions in the MgAl_2S_4 : Er~3+ and CaAl_2S_4 : Er~3+single crystals.
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