Magnetotransport in multi-Weyl semimetals: a kinetic theory approach
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[1] I. Shovkovy,et al. Hydrodynamic modes in a magnetized chiral plasma with vorticity , 2018, Physical Review D.
[2] M. Foster,et al. Topological superconductivity of spin- 3/2 carriers in a three-dimensional doped Luttinger semimetal , 2017, Physical Review B.
[3] E. J. Mele,et al. Weyl and Dirac semimetals in three-dimensional solids , 2017, 1705.01111.
[4] R. Venugopalan,et al. Chiral anomaly, Berry phase, and chiral kinetic theory from worldlines in quantum field theory , 2017, 1701.03331.
[5] Y. Hidaka,et al. Nonlinear Responses of Chiral Fluids from Kinetic Theory , 2017, 1710.00278.
[6] K. Fujikawa. Characteristics of Chiral Anomaly in View of Various Applications , 2017, 1709.08181.
[7] Z. Du,et al. Negative Magnetoresistance without Chiral Anomaly in Topological Insulators. , 2017, Physical review letters.
[8] C. Felser,et al. Experimental signatures of the mixed axial–gravitational anomaly in the Weyl semimetal NbP , 2017, Nature.
[9] Y. Kikuchi,et al. Topological Properties of the Chiral Magnetic Effect in Multi-Weyl Semimetals , 2017, 1703.02040.
[10] I. Shovkovy,et al. Second-order dissipative hydrodynamics for plasma with chiral asymmetry and vorticity , 2017, 1702.07791.
[11] M. Zahid Hasan,et al. Discovery of Weyl fermion semimetals and topological Fermi arc states , 2017, 1702.07310.
[12] V. Zyuzin. Magnetotransport of Weyl semimetals due to the chiral anomaly , 2016, 1608.01286.
[13] A. Zunger,et al. Predicted Realization of Cubic Dirac Fermion in Quasi-One-Dimensional Transition-Metal Monochalcogenides , 2016, 1611.04147.
[14] Claudia Felser,et al. Topological Materials: Weyl Semimetals , 2016, 1611.04182.
[15] P. Goswami,et al. Interacting Weyl fermions: Phases, phase transitions, and global phase diagram , 2016, 1610.05762.
[16] S. Sarma,et al. Weyl fermions with arbitrary monopoles in magnetic fields: Landau levels, longitudinal magnetotransport, and density-wave ordering , 2016, 1608.06632.
[17] A. Lucas,et al. Hydrodynamic theory of thermoelectric transport and negative magnetoresistance in Weyl semimetals , 2016, Proceedings of the National Academy of Sciences.
[18] K. Landsteiner,et al. Odd Viscosity in the Quantum Critical Region of a Holographic Weyl Semimetal. , 2016, Physical review letters.
[19] Rodrigo Soto,et al. Kinetic theory and transport phenomena , 2016 .
[20] A. Boyarsky,et al. Anomalous Maxwell equations for inhomogeneous chiral plasma , 2016, 1603.03442.
[21] Kun Yang,et al. Transport evidence for the three-dimensional Dirac semimetal phase in ZrT e 5 , 2016, 1603.05351.
[22] T. Xia,et al. Resistivity plateau and extremely large magnetoresistance in NbAs 2 and TaAs 2 , 2016, 1601.04239.
[23] Su-Yang Xu,et al. Signatures of the Adler–Bell–Jackiw chiral anomaly in a Weyl fermion semimetal , 2016, Nature Communications.
[24] B. Spivak,et al. Magnetotransport phenomena related to the chiral anomaly in Weyl semimetals , 2015, 1510.01817.
[25] J. Sau,et al. Dirty Weyl semimetals: Stability, phase transition, and quantum criticality , 2015, 1507.07551.
[26] Su-Yang Xu,et al. New type of Weyl semimetal with quadratic double Weyl fermions , 2015, Proceedings of the National Academy of Sciences.
[27] G. Gu,et al. Chiral magnetic effect in ZrTe5 , 2014, Nature Physics.
[28] C. V. D. Poel. The Chiral Magnetic Effect at Heavy Ion Collisions , 2016 .
[29] D. Pesin,et al. Density of states and magnetotransport in Weyl semimetals with long-range disorder , 2015, 1507.05349.
[30] K. Landsteiner,et al. Anomalous magnetoconductivity and relaxation times in holography , 2015, 1504.06566.
[31] X. Dai,et al. Observation of the Chiral-Anomaly-Induced Negative Magnetoresistance in 3D Weyl Semimetal TaAs , 2015, 1503.01304.
[32] M. Stephanov,et al. Collective modes of chiral kinetic theory in a magnetic field , 2014, 1501.00222.
[33] J. Sau,et al. Magnetic catalysis and axionic charge-density-wave in Weyl semimetals , 2014, 1406.4501.
[34] A. Burkov. Chiral anomaly and diffusive magnetotransport in Weyl metals. , 2014, Physical review letters.
[35] M. Stephanov,et al. Lorentz invariance in chiral kinetic theory. , 2014, Physical review letters.
[36] Bohm-Jung Yang,et al. Classification of stable three-dimensional Dirac semimetals with nontrivial topology , 2014, Nature Communications.
[37] P. Goswami,et al. Double Berry monopoles and topological surface states in the superconducting B-phase of UPt$_3$ , 2014 .
[38] V. A. Miransky,et al. Chiral anomaly, dimensional reduction, and magnetoresistivity of Weyl and Dirac semimetals , 2013, 1312.0027.
[39] W. Hanke,et al. Chiral d -wave superconductivity in SrPtAs , 2013, 1311.4909.
[40] K. Landsteiner. Anomalous transport of Weyl fermions in Weyl semimetals , 2013, 1306.4932.
[41] D. Kharzeev,et al. Triangle anomaly in Weyl semimetals , 2013, 1305.6338.
[42] M. M. Vazifeh,et al. Electromagnetic response of Weyl semimetals. , 2013, Physical review letters.
[43] N. Yamamoto,et al. Kinetic theory with Berry curvature from quantum field theories , 2012, 1210.8158.
[44] S. Tewari,et al. Axionic field theory of (3+1)-dimensional Weyl semimetals , 2012, 1210.6352.
[45] B. Spivak,et al. Chiral Anomaly and Classical Negative Magnetoresistance of Weyl Metals , 2012, 1206.1627.
[46] M. Stephanov,et al. Chiral kinetic theory. , 2012, Physical review letters.
[47] A. Zyuzin,et al. Topological response in Weyl semimetals and the chiral anomaly , 2012, 1206.1868.
[48] A. Grushin. Consequences of a condensed matter realization of Lorentz violating QED in Weyl semi-metals , 2012, 1205.3722.
[49] N. Yamamoto,et al. Berry curvature, triangle anomalies, and the chiral magnetic effect in Fermi liquids. , 2012, Physical review letters.
[50] R. Loganayagam,et al. Anomaly/transport in an Ideal Weyl gas , 2012, 1201.2812.
[51] Xi Dai,et al. Multi-Weyl topological semimetals stabilized by point group symmetry. , 2011, Physical review letters.
[52] V. Aji. Adler-Bell-Jackiw anomaly in Weyl semimetals: Application to pyrochlore iridates , 2011, 1108.4426.
[53] Xi Dai,et al. Chern semimetal and the quantized anomalous Hall effect in HgCr2Se4. , 2011, Physical review letters.
[54] Nabamita Banerjee,et al. Hydrodynamics from charged black branes , 2008, 0809.2596.
[55] E. Megías,et al. Gravitational Anomaly and Transport , 2011 .
[56] D. Son,et al. Hydrodynamics with triangle anomalies. , 2009, Physical review letters.
[57] A. Yarom,et al. Fluid dynamics of R-charged black holes , 2008, 0809.2488.
[58] F. Guinea,et al. The electronic properties of graphene , 2007, Reviews of Modern Physics.
[59] D. Kharzeev,et al. Chiral magnetic effect , 2008, 0808.3382.
[60] T. Osada. Negative Interlayer Magnetoresistance and Zero-Mode Landau Level in Multilayer Dirac Electron Systems(Condensed matter: electronic structure and electrical, magnetic, and optical properties) , 2008 .
[61] Qian Niu,et al. Berry phase effects on electronic properties , 2009, 0907.2021.
[62] K. Fujikawa. Quantum anomaly and geometric phase: Their basic differences , 2005, hep-th/0511142.
[63] Z. Horváth,et al. Berry Phase Correction to Electron Density in Solids and , 2005, cond-mat/0506051.
[64] K. Fujikawa,et al. Path integrals and quantum anomalies , 2004 .
[65] G. Volovik,et al. The Universe in a Helium Droplet , 2003 .
[66] Q. Niu,et al. Wave-packet dynamics in slowly perturbed crystals: Gradient corrections and Berry-phase effects , 1999, cond-mat/9908003.
[67] R. Jackiw. The Chiral Anomaly , 1991 .
[68] Wang. Role of multiple minijets in high-energy hadronic reactions. , 1991, Physical review. D, Particles and fields.
[69] J. Schwinger. Anomalies in Quantum Field Theory , 1990 .
[70] G. Bergmann,et al. Weak localization in thin films: a time-of-flight experiment with conduction electrons , 1984 .
[71] Holger Bech Nielsen,et al. The Adler-Bell-Jackiw anomaly and Weyl fermions in a crystal , 1983 .
[72] H. Nielsen,et al. A no-go theorem for regularizing chiral fermions , 1981 .
[73] A. Vilenkin. Equilibrium parity-violating current in a magnetic field , 1980 .
[74] A. Vilenkin. MACROSCOPIC PARITY VIOLATING EFFECTS: NEUTRINO FLUXES FROM ROTATING BLACK HOLES AND IN ROTATING THERMAL RADIATION , 1979 .
[75] R. Delbourgo,et al. The gravitational correction to PCAC , 1972 .
[76] J. Bell,et al. A PCAC puzzle: π0→γγ in the σ-model , 1969 .
[77] S. Adler. Axial vector vertex in spinor electrodynamics , 1969 .