Liang L. Zhao
Rice University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Liang L. Zhao.
Physical Review B | 2012
Liang L. Zhao; Stefan Lausberg; Hyunsoo Kim; Makariy A. Tanatar; M. Brando; Ruslan Prozorov; Emilia Morosan
We present evidence of type-I superconductivity in YbSb2 single crystals from dc and ac magnetization, heat capacity, and resistivity measurements. The critical temperature and critical field are determined to be Tc≈ 1.3 K and Hc≈ 55 Oe. A small Ginzburg-Landau parameter κ= 0.05, together with typical magnetization isotherms of type-I superconductors, small critical field values, a strong differential paramagnetic effect signal, and a field-induced change from second- to first-order phase transition, confirms the type-I nature of the superconductivity in YbSb2. A possible second superconducting state is observed in the radio-frequency susceptibility measurements, with Tc(2)≈ 0.41 K and Hc(2)≈ 430 Oe.
Physical Review B | 2011
M. S. Kim; Z. P. Yin; Liang L. Zhao; Emilia Morosan; Gabriel Kotliar; Meigan C. Aronson
We present here measurements of the thermopower, thermal conductivity, and electrical resistivity of the newly reported compound CaFe4As3. Evidence is presented from specific heat and electrical resistivity measurements that a substantial fraction of the Fermi surface survives the onset of spin density wave (SDW) order at the Neel temperature TN=88 K, and its subsequent commensurate lockin transition at T2=26.4 K. The specific heat below T2 consists of a normal metallic component from the ungapped parts of the Fermi surface, and a Bardeen-Cooper- Schrieffer (BCS) component that represents the SDW gapping of the Fermi surface. A large Kadowaki-Woods ratio is found at low temperatures, showing that the ground state of CaFe4As3 is a strongly interacting Fermi liquid. The thermal conductivity of CaFe4As3 is an order of magnitude smaller than those of conventional metals at all temperatures, due to a strong phonon scattering. The thermoelectric power displays a sign change from positive to negative indicating that a partial gap forms at the Fermi level with the onset of commensurate spin density wave order at T2=26.4 K. The small value of the thermopower and the enhancements of the resistivity due to gap formation and strong quasiparticle interactions offset the low value of the thermal conductivity, yielding only a modest value for the thermoelectric figure of merit Z 0, CaFe4As3 is among the most strongly correlated of the known Fe-based pnictide and chalcogenide systems.
Inorganic Chemistry | 2012
W. Adam Phelan; Michael J. Kangas; Brenton L. Drake; Liang L. Zhao; Jiakui K. Wang; J. F. DiTusa; Emilia Morosan; Julia Y. Chan
LnCu(2)(Al,Si)(5) (Ln = La and Ce) were synthesized and characterized. These compounds adopt the SrAu(2)Ga(5) structure type and crystallize in the tetragonal space group P4/mmm with unit cell dimensions of a ≈ 4.2 Å and c ≈ 7.9 Å. Herein, we report the structure as obtained from single crystal X-ray diffraction. Additionally, we report the magnetic susceptibility, magnetization, resistivity, and specific heat capacity data obtained for polycrystalline samples of LnCu(2)(Al,Si)(5) (Ln = La and Ce).
Advanced Functional Materials | 2009
Rizia Bardhan; Wenxue Chen; Carlos Perez-Torres; Marc Bartels; Ryan Huschka; Liang L. Zhao; Emilia Morosan; Robia G. Pautler; Amit Joshi; Naomi J. Halas
Physical Review Letters | 2010
Jian-Xin Zhu; Rong Yu; Hangdong Wang; Liang L. Zhao; Matthew D. Jones; Jianhui Dai; Elihu Abrahams; Emilia Morosan; Minghu Fang; Qimiao Si
Physical Review B | 2011
Jiakui K. Wang; Liang L. Zhao; Quan Yin; Gabriel Kotliar; M. S. Kim; Meigan C. Aronson; Emilia Morosan
Physical Review B | 2009
Liang L. Zhao; Tanghong Yi; James C. Fettinger; Susan M. Kauzlarich; Emilia Morosan
Journal of Magnetism and Magnetic Materials | 2008
Jian-Zhi Wang; Liang L. Zhao; K. Gong
Inorganic Chemistry | 2012
W. Adam Phelan; Michael J. Kangas; Gregory T. McCandless; Brenton L. Drake; Neel Haldolaarachchige; Liang L. Zhao; Jiakui K. Wang; Xiaoping P. Wang; David P. Young; Emilia Morosan; Christina Hoffmann; Julia Y. Chan
Physical Review B | 2011
Liang L. Zhao; S. K. Kim; Gregory T. McCandless; M. S. Torikachvili; P. C. Canfield; Julia Y. Chan; Emilia Morosan