J. S. Xia
University of Florida
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Featured researches published by J. S. Xia.
Physical Review Letters | 1999
W. Pan; J. S. Xia; V Shvarts; D. E. Adams; H. L. Stormer; D. C. Tsui; L. N. Pfeiffer; K. W. Baldwin; K. W. West
We report ultralow temperature experiments on the obscure fractional quantum Hall effect at Landau level filling factor
Physical Review Letters | 2004
J. S. Xia; W. Pan; C. L. Vicente; E. D. Adams; N. S. Sullivan; H. L. Stormer; D. C. Tsui; Loren Pfeiffer; K. W. Baldwin; K. W. West
\ensuremath{\nu}\phantom{\rule{0ex}{0ex}}=\phantom{\rule{0ex}{0ex}}5/2
Physical Review Letters | 2009
Wanli Li; C. L. Vicente; J. S. Xia; W. Pan; D. C. Tsui; L. N. Pfeiffer; K. W. West
in a very high-mobility specimen of
Physical Review B | 2008
Wei Pan; J. S. Xia; H. L. Stormer; D. C. Tsui; C. L. Vicente; E. D. Adams; N. S. Sullivan; Loren Pfeiffer; K. W. Baldwin; K. W. West
\ensuremath{\mu}\phantom{\rule{0ex}{0ex}}=\phantom{\rule{0ex}{0ex}}1.7\ifmmode\times\else\texttimes\fi{}{10}^{7}{\mathrm{cm}}^{2}/\mathrm{V}\mathrm{s}
Physical Review Letters | 2008
Li Yin; J. S. Xia; Vivien Zapf; N. S. Sullivan; A. Paduan-Filho
. We achieve an electron temperature as low as
Nature | 2012
Rong Yu; Liang Yin; N. S. Sullivan; J. S. Xia; Chao Huan; A. Paduan-Filho; N. F. Oliveira; Stephan Haas; Alexander Steppke; C. F. Miclea; Franziska Weickert; R. Movshovich; Eundeok Mun; Brian L. Scott; Vivien Zapf; Tommaso Roscilde
\ensuremath{\sim}4\mathrm{mK}
Journal of Low Temperature Physics | 1995
W. Ni; J. S. Xia; E. D. Adams; P. S. Haskins; J. E. McKisson
, where we observe vanishing
Physical Review B | 2005
C. L. Vicente; H. C. Choi; J. S. Xia; W. P. Halperin; N. Mulders; Yoonseok Lee
{R}_{\mathrm{xx}}
Journal of Low Temperature Physics | 1992
J. Xu; O. Avenel; J. S. Xia; M-F. Xu; T. Lang; P. L. Moyland; W. Ni; E. D. Adams; Gary G. Ihas; Mark W. Meisel; N. S. Sullivan; Y. Takano
and, for the first time, a quantized Hall resistance,
Physical Review Letters | 2003
H. Akimoto; D. Candela; J. S. Xia; William J. Mullin; E.D. Adams; N. S. Sullivan
{R}_{\mathrm{xy}}\phantom{\rule{0ex}{0ex}}=\phantom{\rule{0ex}{0ex}}h/(5/2){e}^{2}