T. A. Sayles
University of California, San Diego
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Featured researches published by T. A. Sayles.
Physical Review B | 2005
W.M. Yuhasz; N. A. Frederick; P.-C. Ho; N. P. Butch; B.J. Taylor; T. A. Sayles; M. B. Maple; J. B. Betts; A. Lacerda; P. Rogl; Gerald Giester
The filled skutterudite compound
Physical Review B | 2005
P.-C. Ho; W.M. Yuhasz; N. P. Butch; N. A. Frederick; T. A. Sayles; J. R. Jeffries; M. B. Maple; J. B. Betts; A. Lacerda; P. Rogl; Gerald Giester
\mathrm{Sm}{\mathrm{Os}}_{4}{\mathrm{Sb}}_{12}
Journal of Physics: Condensed Matter | 2008
J. J. Hamlin; R. E. Baumbach; D. A. Zocco; T. A. Sayles; M. B. Maple
was prepared in single-crystal form and characterized using x-ray diffraction, specific-heat, electrical resistivity, and magnetization measurements. The
Physical Review Letters | 2008
Swee K. Goh; Johnpierre Paglione; M. Sutherland; Eoin O'Farrell; C. Bergemann; T. A. Sayles; M. B. Maple
\mathrm{Sm}{\mathrm{Os}}_{4}{\mathrm{Sb}}_{12}
Inorganic Chemistry | 2010
Christopher C. Beedle; J. J. Henderson; Pei-Chun Ho; T. A. Sayles; Motohiro Nakano; James R. O’Brien; Katie J. Heroux; Enrique del Barco; M. Brian Maple; David N. Hendrickson
crystals have the
Physical Review Letters | 2009
J. J. Hamlin; D. A. Zocco; T. A. Sayles; M. B. Maple; Jiun-Haw Chu; I. R. Fisher
\mathrm{La}{\mathrm{Fe}}_{4}{\mathrm{P}}_{12}
Journal of Physics: Condensed Matter | 2008
R. E. Baumbach; P.-C. Ho; T. A. Sayles; M. B. Maple; R. Wawryk; T. Cichorek; A. Pietraszko; Z. Henkie
-type structure with lattice parameter
Physical Review Letters | 2005
Kenneth S. Burch; A. A. Schafgans; N. P. Butch; T. A. Sayles; M. B. Maple; Brian C. Sales; David Mandrus; D. N. Basov
a=9.3085\phantom{\rule{0.3em}{0ex}}\mathrm{\AA{}}
Physical Review B | 2006
W.M. Yuhasz; N. P. Butch; T. A. Sayles; P.-C. Ho; J. R. Jeffries; Tatsuya Yanagisawa; N. A. Frederick; M. B. Maple; Z. Henkie; A. Pietraszko; S. McCall; M. W. McElfresh; M.J. Fluss
. Specific-heat measurements indicate a large electronic specific-heat coefficient of
Physical Review B | 2005
N. A. Frederick; T. A. Sayles; M. B. Maple
\ensuremath{\approx}880\phantom{\rule{0.3em}{0ex}}\mathrm{mJ}∕\mathrm{mol}\phantom{\rule{0.2em}{0ex}}{\mathrm{K}}^{2}