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Ho, J.C.; Taher, S.M.A.; King, G.B.; Gruber, J.B.; Beaudry, B.J.; Gschneidner, K.A. Jr.
Wichita State Univ., KS (USA); North Dakota State Univ., Fargo (USA); Ames Lab., IA (USA)1978
Wichita State Univ., KS (USA); North Dakota State Univ., Fargo (USA); Ames Lab., IA (USA)1978
AbstractAbstract
[en] Heat capacity measurements between 2 and 200K were made on a series of nearly stoichiometric rare earth sesquisulfides RS/sub 1.5/ with R = La, Ce, Pr, Nd, Gd, Tb, Dy, Ho, Er, Tm, or Lu. No magnetic ordering was observed. Extra heat capacity contributions beyond those due to the lattice and conduction electrons occur in all cases except in the La and Lu compounds. Such contributions are mostly of the Schottky type associated with crystal field effects
Original Title
2-200K
Primary Subject
Source
1978; 8 p; 15. conference on low temperature physics; Grenoble, France; 23 - 29 Aug 1978; CONF-780824--5; Available from NTIS., PC A02/MF A01
Record Type
Report
Literature Type
Conference; Progress Report
Report Number
Country of publication
CERIUM SULFIDES, DYSPROSIUM SULFIDES, ERBIUM SULFIDES, GADOLINIUM SULFIDES, HOLMIUM SULFIDES, LANTHANUM SULFIDES, LUTETIUM SULFIDES, NEODYMIUM SULFIDES, PRASEODYMIUM SULFIDES, RARE EARTH COMPOUNDS, SCHOTTKY DEFECTS, SEMICONDUCTOR MATERIALS, SPECIFIC HEAT, SULFUR COMPOUNDS, TERBIUM SULFIDES, THULIUM SULFIDES, ULTRALOW TEMPERATURE
CERIUM COMPOUNDS, CHALCOGENIDES, CRYSTAL DEFECTS, CRYSTAL STRUCTURE, DYSPROSIUM COMPOUNDS, ERBIUM COMPOUNDS, GADOLINIUM COMPOUNDS, HOLMIUM COMPOUNDS, LANTHANUM COMPOUNDS, LUTETIUM COMPOUNDS, NEODYMIUM COMPOUNDS, PHYSICAL PROPERTIES, POINT DEFECTS, PRASEODYMIUM COMPOUNDS, SULFIDES, TERBIUM COMPOUNDS, THERMODYNAMIC PROPERTIES, THULIUM COMPOUNDS, VACANCIES
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