Effect of interorbital scattering on superconductivity in doped Dirac semimetals
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[1] Yongbin Lee,et al. Electron irradiation effects on superconductivity in PdTe2 : An application of a generalized Anderson theorem , 2020, Physical Review Research.
[2] D. Cavanagh,et al. Robustness of unconventional s -wave superconducting states against disorder , 2019, Physical Review B.
[3] T. Lorenz,et al. Generalized Anderson’s theorem for superconductors derived from topological insulators , 2019, Science Advances.
[4] R. Sarpong,et al. Bio-inspired synthesis of xishacorenes A, B, and C, and a new congener from fuscol , 2019, Chemical science.
[5] J. Ruhman,et al. Superconductivity near a Ferroelectric Quantum Critical Point in Ultralow-Density Dirac Materials , 2019, Physical Review X.
[6] T. Lorenz,et al. Nematic superconductivity in Cu1.5(PbSe)5(Bi2Se3)6 , 2018, Physical Review B.
[7] W. Kwok,et al. Nanocalorimetric evidence for nematic superconductivity in the doped topological insulator Sr0.1Bi2Se3 , 2018, Physical Review B.
[8] M. Khodas,et al. Robust parity-mixed superconductivity in disordered monolayer transition metal dichalcogenides , 2018, Physical Review B.
[9] J. Maciejko,et al. Disordered fermionic quantum critical points , 2018, Physical Review B.
[10] D. Feng,et al. Direct Visualization of the Nematic Superconductivity in CuxBi2Se3 , 2018, Physical Review X.
[11] A. Geim,et al. Unusual Suppression of the Superconducting Energy Gap and Critical Temperature in Atomically Thin NbSe2. , 2018, Nano letters.
[12] I. Fomin. Analog of the Anderson Theorem for the Polar Phase of Liquid 3He in a Nematic Aerogel , 2018, Journal of Experimental and Theoretical Physics.
[13] R. Fernandes,et al. Impact of disorder on the superconducting transition temperature near a Lifshitz transition , 2018, Physical Review B.
[14] M. Sigrist,et al. Tailoring Tc by symmetry principles: The concept of superconducting fitness , 2018, Physical Review B.
[15] L. Chirolli. Chiral superconductivity in thin films of doped Bi2Se3 , 2018, Physical Review B.
[16] K. T. Law,et al. Nematic topological superconducting phase in Nb-doped Bi2Se3 , 2017, 1711.03265.
[17] L. Fu,et al. Superconductivity in three-dimensional spin-orbit coupled semimetals , 2017, 1707.03831.
[18] A. Zyuzin,et al. Nematic Skyrmions in Odd-Parity Superconductors. , 2017, Physical review letters.
[19] J. Dodge,et al. Disorder and superfluid density in overdoped cuprate superconductors , 2017, 1704.04803.
[20] W. Kwok,et al. Robust odd-parity superconductivity in the doped topological insulator Nb x Bi 2 Se 3 , 2017, 1704.01225.
[21] M. I. Aroyo,et al. Topological quantum chemistry , 2017, Nature.
[22] F. Guinea,et al. Time-reversal and rotation symmetry breaking superconductivity in Dirac materials , 2016, 1611.02173.
[23] Y. Pan,et al. High-pressure study of the basal-plane anisotropy of the upper critical field of the topological superconductor Sr x Bi 2 Se 3 , 2016, 1609.04945.
[24] K. T. Law,et al. Superconductivity-Induced Ferromagnetism and Weyl Superconductivity in Nb-doped Bi 2 Se 3 , 2016, 1608.05825.
[25] A. Bollinger,et al. Dependence of the critical temperature in overdoped copper oxides on superfluid density , 2016, Nature.
[26] L. Fu,et al. Three-dimensional Majorana fermions in chiral superconductors , 2016, Science Advances.
[27] I. Ozfidan,et al. Gapless helical superconductivity on the surface of a three-dimensional topological insulator , 2016, 1606.03400.
[28] Y. Pan,et al. Rotational symmetry breaking in the topological superconductor SrxBi2Se3 probed by upper-critical field experiments , 2016, Scientific Reports.
[29] Y. Hor,et al. Rotational Symmetry Breaking in a Trigonal superconductor Nb-doped Bi$_{2}$Se$_{3}$ , 2016, 1603.04040.
[30] Y. Nakajima,et al. Beyond triplet: Unconventional superconductivity in a spin-3/2 topological semimetal , 2016, Science Advances.
[31] M. Weinert,et al. Pairing of j=3/2 Fermions in Half-Heusler Superconductors. , 2016, Physical review letters.
[32] Y. Maeno,et al. Thermodynamic evidence for nematic superconductivity in CuxBi2Se3 , 2016, Nature Physics.
[33] M. Kriener,et al. Spin-rotation symmetry breaking in the superconducting state of CuxBi2Se3 , 2015, Nature Physics.
[34] V. Kozii,et al. Odd-parity superconductors with two-component order parameters: nematic and chiral, full gap and Majorana node , 2015, 1512.04554.
[35] L. Fu,et al. Odd-Parity Superconductivity in the Vicinity of Inversion Symmetry Breaking in Spin-Orbit-Coupled Systems. , 2015, Physical review letters.
[36] L. Fu,et al. Parity-Breaking Phases of Spin-Orbit-Coupled Metals with Gyrotropic, Ferroelectric, and Multipolar Orders. , 2015, Physical review letters.
[37] Y. Nakajima,et al. Topological RPdBi half-Heusler semimetals: A new family of noncentrosymmetric magnetic superconductors , 2015, Science Advances.
[38] Y. Ando,et al. Topological Crystalline Insulators and Topological Superconductors: From Concepts to Materials , 2015, 1501.00531.
[39] Xiong-Jun Liu,et al. Observation of superconductivity induced by a point contact on 3D Dirac semimetal Cd3As2 crystals. , 2015, Nature materials.
[40] Y. Nagai. Non-fragile superconductivity with nodes in the superconducting topological insulator CuxBi2Se3: Zeeman orbital field and non-magnetic impurities , 2014, 1410.4646.
[41] L. Fu. Odd-parity topological superconductor with nematic order: Application to Cu x Bi 2 Se 3 , 2014, 1408.6508.
[42] B. Skinner. Coulomb disorder in three-dimensional Dirac systems , 2014, 1406.2318.
[43] K. Hashimoto,et al. Disorder-induced topological change of the superconducting gap structure in iron pnictides , 2014, Nature Communications.
[44] M. Kriener,et al. Unusual nature of fully gapped superconductivity in In-doped SnTe , 2013, 1309.1340.
[45] G. Tkachov. Suppression of surface p-wave superconductivity in disordered topological insulators , 2013, 1304.0631.
[46] R. Nandkishore,et al. Superconductivity of disordered Dirac fermions , 2013, 1302.5113.
[47] Y. Wang,et al. Using controlled disorder to distinguish s ± and s + + gap structure in Fe-based superconductors , 2012, 1210.7474.
[48] Z. Ren,et al. Odd-parity pairing and topological superconductivity in a strongly spin-orbit coupled semiconductor. , 2012, Physical review letters.
[49] M. Kriener,et al. Anomalous suppression of the superfluid density in the CuxBi2Se3 superconductor upon progressive Cu intercalation , 2012, 1206.6260.
[50] Y. Yamaji,et al. Impurity Effects on Superconductivity on Surfaces of Topological Insulators , 2012, 1206.2739.
[51] Jun Li,et al. Superconductivity suppression of Ba0.5K0.5Fe2−2xM2xAs2 single crystals by substitution of transition metal (M = Mn, Ru, Co, Ni, Cu, and Zn) , 2012, 1206.0811.
[52] K. Kirshenbaum,et al. Universal pair-breaking in transition-metal-substituted iron-pnictide superconductors , 2012, 1203.5114.
[53] K. Michaeli,et al. Spin-orbit locking as a protection mechanism of the odd-parity superconducting state against disorder. , 2012, Physical review letters.
[54] N. Butch,et al. Superconductivity in the topological semimetal YPtBi , 2011, 1109.0979.
[55] D. Efremov,et al. Disorder-induced transition between s± and s++ states in two-band superconductors , 2011, 1104.3840.
[56] Y. Yamaji,et al. Stability of Unconventional Superconductivity on Surfaces of Topological Insulators , 2011, 1104.1232.
[57] A. Potter,et al. Engineering a p + ip superconductor: Comparison of topological insulator and Rashba spin-orbit-coupled materials , 2011, 1103.2129.
[58] Dong Qian,et al. Observation of topological order in a superconducting doped topological insulator , 2010, 1104.3881.
[59] Masatoshi Sato,et al. Topological odd-parity superconductors , 2009, 0912.5281.
[60] Liang Fu,et al. Odd-parity topological superconductors: theory and application to CuxBi2Se3. , 2009, Physical review letters.
[61] J. Rowell,et al. Suppression of the critical temperature of superconducting NdFeAs(OF) single crystals by Kondo-like defect sites induced by alpha-particle irradiation. , 2009, Physical review letters.
[62] A. Williams,et al. Superconductivity in CuxBi2Se3 and its implications for pairing in the undoped topological insulator. , 2009, Physical review letters.
[63] R. Sknepnek,et al. Orbital coupling and superconductivity in the iron pnictides , 2009, 0903.4473.
[64] Tanmoy Das,et al. Superconductivity and topological Fermi surface transitions in electron-doped cuprates near optimal doping , 2007, 0711.1504.
[65] H. Alloul,et al. Defects in correlated metals and superconductors , 2007, 0711.0877.
[66] T. Noda,et al. Effect of disorder outside the CuO2 planes on Tc of copper oxide superconductors. , 2005, Physical review letters.
[67] M. Vojta,et al. Impact of disorder on unconventional superconductors with competing ground states , 2004, cond-mat/0408026.
[68] Y. Maeno,et al. The superconductivity of Sr2RuO4 and the physics of spin-triplet pairing , 2003 .
[69] Y. Maeno,et al. Extremely Strong Dependence of Superconductivity on Disorder in Sr2RuO4 , 1998 .
[70] Chau,et al. Impurity scattering and triplet superconductivity in UPt3. , 1995, Physical review letters.
[71] V. J. Emery,et al. Importance of phase fluctuations in superconductors with small superfluid density , 1995, Nature.
[72] A. Finkel'stein,et al. Suppression of superconductivity in homogeneously disordered systems , 1994 .
[73] Hirschfeld,et al. Effect of strong scattering on the low-temperature penetration depth of a d-wave superconductor. , 1993, Physical review. B, Condensed matter.
[74] Norman,et al. Predictions for impurity-induced Tc suppression in the high-temperature superconductors. , 1993, Physical review. B, Condensed matter.
[75] Kazuo Ueda,et al. Phenomenological theory of unconventional superconductivity , 1991 .
[76] Varma,et al. Inelastic scattering and pair breaking in anisotropic and isotropic superconductors. , 1988, Physical review. B, Condensed matter.
[77] M. Salomaa,et al. Topological Transition of v-Vortex Core Matter in Superfluid 3He-B , 1986 .
[78] Patrick A. Lee,et al. Disordered Electronic Systems , 1985, The Quantum Nature of Materials.
[79] Philip W. Anderson,et al. Theory of dirty superconductors , 1959 .
[80] L. Gor’kov. Theory of Superconducting Alloys , 2008 .
[81] Linda R. Getzen,et al. February 1, 2008 , 2008 .