Micro-probe Raman spectroscopy for detection of inhomogeneities in YVO4 single crystals

被引:25
作者
Erdei, S [1 ]
Jin, B [1 ]
Ainger, FW [1 ]
Bhalla, AS [1 ]
Keszei, B [1 ]
Vandlik, J [1 ]
Suveges, A [1 ]
机构
[1] HUNGARIAN ACAD SCI,RES INST MAT SCI,BUDAPEST,HUNGARY
关键词
D O I
10.1063/1.361276
中图分类号
O59 [应用物理学];
学科分类号
摘要
Several near quasicongruent undoped YVO4 single crystals grown by the Czochralski (CZ) technique as well as near stoichiometric YVO4 single crystals grown by the top-seeded solution growth technique, were investigated by micro-probe Raman spectroscopy using unpolarized argon-ion laser light. The line broadening effects of the Raman active mode at 379 cm(-1) indicate that all CZ grown crystals posses wider peak widths than near stoichiometric YVO4. In the latter case a value of 9.23 cm(-1) was measured for full width at half-maximum. Although the annealing process in O-2 can improve the oxygen stoichiometry int he originally slightly oxygen deficient CZ grown YVO4 crystals, certain remaining peak broadening effects demonstrate a Y-V related stoichiometry problem by both lower (external) and higher frequency (internal) modes. Radial inhomogeneous distributions were observed in CZ specimens by the shift of external Raman modes at 157 and 162 cm(-1) frequencies. In addition, nonassigned low intensity extra Raman peaks appeared over 1000 cm(-1) frequencies in all CZ grown samples. The above detected changes in Y-V-O stoichiometry demonstrate a complex phase system around the homogeneity region of quasicongruent YVO4 specimens and enable a more realistic and unified interpretation of the segregated defects and stoichiometry changes in CZ grown YVO4 single crystals than previously available. (C) 1996 American Institutes of Physics.
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页码:2834 / 2838
页数:5
相关论文
共 22 条
[11]  
FOLDVARI I, 1984, CRYST RES TECHNOL, V19, P1659, DOI 10.1002/crat.2170191231
[12]   RAMAN-STUDY OF OXYGEN-DEFICIENT YVO4 SINGLE-CRYSTALS [J].
JIN, BM ;
ERDEI, S ;
BHALLA, AS ;
AINGER, FW .
MATERIALS RESEARCH BULLETIN, 1995, 30 (10) :1293-1300
[13]  
KUWANO Y, 1990, LASER STUDY, V18, P64
[14]  
Kuzminov Yu. S., 1993, Ferroelectrics, V142, P105, DOI 10.1080/00150199308237888
[15]  
MCKNIGHT HG, 1973, 0022F ECOM US ARM
[16]  
MILLER SA, 1967, PHYS REV, V168, P964
[17]   INCLUSIONS IN YTTRIUM VANADATE CRYSTALS [J].
MORRISON, AD .
JOURNAL OF MATERIALS SCIENCE, 1973, 8 (11) :1666-1669
[18]   GROWTH OF YTTRIUM VANADATE CRYSTAL BY MODIFIED FLOATING ZONE TECHNIQUE [J].
MUTO, K ;
AWAZU, K .
JAPANESE JOURNAL OF APPLIED PHYSICS, 1969, 8 (11) :1360-&
[19]  
POPOV VI, SOV PHYS-CRYSTALLOGR, V13, P974
[20]   GROWTH OF LARGE YTTRIUM VANADATE SIMGLE CRYSTALS FOR OPTICAL MASER STUDIES [J].
RUBIN, JJ ;
VANUITER.LG .
JOURNAL OF APPLIED PHYSICS, 1966, 37 (07) :2920-&