Evolution of Anisotropic Displacement Parameters and Superconductivity with Chemical Pressure in BiS2-Based REO0.5F0.5BiS2 (RE = La, Ce, Pr, and Nd)
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[1] Kazuhisa Hoshi,et al. Selenium isotope effect in the layered bismuth chalcogenide superconductor LaO0.6F0.4Bi(S,Se)2 , 2018 .
[2] Y. Goto,et al. Superconductivity in La1−xCex OBiSSe: Carrier doping by mixed valence of Ce ions , 2017, EPL (Europhysics Letters).
[3] C. Moriyoshi,et al. High-throughput powder diffraction measurement system consisting of multiple MYTHEN detectors at beamline BL02B2 of SPring-8. , 2017, The Review of scientific instruments.
[4] J. Neuefeind,et al. Charge Fluctuations in the NdO1−xFxBiS2 Superconductors , 2017, 1708.03957.
[5] D. Tatsuma,et al. Intrinsic Phase Diagram of Superconductivity in the BiCh2-Based System Without In-Plane Disorder , 2017 .
[6] H. Ikeda,et al. Charge and quadrupole fluctuations and gap anisotropy in BiS 2 -based superconductors , 2017, 1704.06396.
[7] Shik Shin,et al. Unconventional Superconductivity in the BiS_{2}-Based Layered Superconductor NdO_{0.71}F_{0.29}BiS_{2}. , 2017, Physical review letters.
[8] E. Paris,et al. Role of the local structure in superconductivity of LaO0.5F0.5BiS2−xSex system , 2017, Journal of physics. Condensed matter : an Institute of Physics journal.
[9] O. Miura,et al. Evolution of Eu valence and superconductivity in layered Eu0.5La0.5FBiS2-xSex system , 2017 .
[10] C. Moriyoshi,et al. Synchrotron powder X-ray diffraction and structural analysis of Eu0.5La0.5FBiS2-xSex , 2017, 1701.07575.
[11] Y. Aoki,et al. Bulk Superconductivity Induced by In-Plane Chemical Pressure Effect in Eu0.5La0.5FBiS2−xSex , 2016, 1608.01470.
[12] K. Kuroki,et al. Theoretical aspects of the study on the new bismuth chalcogenide based superconductors , 2015, 1604.01939.
[13] Y. Mizuguchi. Review of superconductivity in BiS2-based layered materials , 2015 .
[14] E. Paris,et al. The effect of RE substitution in layered REO(0.5)F(0.5)BiS2: chemical pressure, local disorder and superconductivity. , 2015, Physical chemistry chemical physics : PCCP.
[15] K. Tadanaga,et al. In-plane chemical pressure essential for superconductivity in BiCh2-based (Ch: S, Se) layered structure , 2015, Scientific Reports.
[16] Y. Takano,et al. In-plane Charge Fluctuations in Bismuth Sulfide Superconductors , 2015, 1503.02333.
[17] R. Jha,et al. Effect of hydrostatic pressures on the superconductivity of new BiS2 based REO0.5F0.5BiS2 (RE=La, Pr and Nd) superconductors , 2014, 1406.4231.
[18] O. Miura,et al. Evolution of Superconductivity in BiS 2 -Based Superconductor LaO 0.5 F 0.5 Bi(S 1- x Se x ) 2 , 2014, 1410.6775.
[19] O. Miura,et al. Chemical Pressure Effect on Superconductivity of BiS 2 -Based Ce 1- x Nd x O 1- y F y BiS 2 and Nd 1- z Sm z O 1- y F y BiS 2 , 2014, 1408.2625.
[20] Qi Guo,et al. Enhanced superconductivity in F-doped LaO1-xFxBiSSe , 2014, 1404.7562.
[21] H. Takatsu,et al. Stabilization of High- T c Phase of BiS 2 -Based Superconductor LaO 0.5 F 0.5 BiS 2 Using High-Pressure Synthesis , 2014, 1402.5189.
[22] S. Demura,et al. Pressure-Induced Enhancement of Superconductivity and Structural Transition in BiS 2 -Layered LaO 1- x F x BiS 2 , 2013, 1309.4250.
[23] H. Takatsu,et al. Correlation between crystal structure and superconductivity in LaO0.5F0.5BiS2 , 2013, 1306.3346.
[24] S. Denholme,et al. Coexistence of bulk superconductivity and ferromagnetism in CeO1-xFxBiS2 , 2013, 1311.4267.
[25] M. Maple,et al. Superconductivity induced by electron doping in La 1-x M x OBiS 2 (M= Ti, Zr, Hf, Th) , 2013, 1303.6216.
[26] Y. Takahide,et al. New Member of BiS2-Based Superconductor NdO1-xFxBiS2 , 2013 .
[27] M. Maple,et al. Superconductivity of F-substituted LnOBiS2 (Ln=La, Ce, Pr, Nd, Yb) compounds , 2013, 1301.3932.
[28] G. Huang,et al. Phonon spectra and superconductivity of the BiS2-based compounds LaO1−xFxBiS2 , 2012, 1210.1743.
[29] T. Watanabe,et al. Evolution of superconductivity in LaO1−xFxBiS2 prepared by high-pressure technique , 2012, 1209.3846.
[30] Anuj Kumar,et al. Synthesis and Superconductivity of New BiS2 Based Superconductor PrO0.5F0.5BiS2 , 2012, 1208.5873.
[31] K. Kuroki,et al. Minimal electronic models for superconducting BiS 2 layers , 2012, 1207.3888.
[32] Fujio Izumi,et al. VESTA: a three-dimensional visualization system for electronic and structural analysis , 2008 .
[33] R. Loewith,et al. Supplemental materials , 2008 .
[34] F. Izumi,et al. Three-Dimensional Visualization in Powder Diffraction , 2007 .