X. Zotos - Research Publications

Similar documents
The Mott Metal-Insulator Transition

Thermal conductivity of anisotropic spin ladders

Spin liquids on ladders and in 2d

Green's Function in. Condensed Matter Physics. Wang Huaiyu. Alpha Science International Ltd. SCIENCE PRESS 2 Beijing \S7 Oxford, U.K.

Computational strongly correlated materials R. Torsten Clay Physics & Astronomy

Metals: the Drude and Sommerfeld models p. 1 Introduction p. 1 What do we know about metals? p. 1 The Drude model p. 2 Assumptions p.

Preface Introduction to the electron liquid

Electron Correlation

Quantum spin systems - models and computational methods

Quantum Spin-Metals in Weak Mott Insulators

2D Bose and Non-Fermi Liquid Metals

Dimerized & frustrated spin chains. Application to copper-germanate

List of published papers

FROM NODAL LIQUID TO NODAL INSULATOR

Quantum Lattice Models & Introduction to Exact Diagonalization

Quantum phase transitions in Mott insulators and d-wave superconductors

Neutron scattering from quantum materials

Gapless Spin Liquids in Two Dimensions

Photoemission Studies of Strongly Correlated Systems

Simulations of Quantum Dimer Models

Field Theories in Condensed Matter Physics. Edited by. Sumathi Rao. Harish-Chandra Research Institute Allahabad. lop

Talk online: sachdev.physics.harvard.edu

DT I JAN S S"= = 11111'11 I HtI IBlIIIt g ~II. Report: ONR Grant N J Unclassified: For General Distribution LECTF

SESSION 2. (September 26, 2000) B. Lake Spin-gap and magnetic coherence in a high-temperature superconductor

Solid State Physics. GIUSEPPE GROSSO Professor of Solid State Physics, Department of Physics, University of Pavia, and INFM

Effects of spin-orbit coupling on the BKT transition and the vortexantivortex structure in 2D Fermi Gases

The Quantum Heisenberg Ferromagnet

arxiv:cond-mat/ v1 [cond-mat.supr-con] 28 May 2003

Linked-Cluster Expansions for Quantum Many-Body Systems

MAGNETISM MADE SIMPLE. An Introduction to Physical Concepts and to Some Useful Mathematical Methods. Daniel C. Mattis

Spin liquids in frustrated magnets

Modelling Dynamical Fluorescent Micro Thermal Imaging of the Heat Diffusion in the La 5 Ca 9 Cu 24 O 41 Spin Ladder Compound.

Interaction-induced Symmetry Protected Topological Phase in Harper-Hofstadter models

Magnetism in Condensed Matter

Topological order in the pseudogap metal

Spin-orbital separation in the quasi-one-dimensional Mott insulator Sr 2 CuO 3 Splitting the electron

Density Matrix Renormalization: A Review of the Method and its Applications arxiv:cond-mat/ v1 26 Mar 2003

'etion 4. Surfaces and -interface. Chapter 1 Statistical Mechanics of SurfcSytman Quantum -Correlated Systems. Chapter 2 Synchrotron X-Ray Studies o

Tuning order in cuprate superconductors

Referee for professional journals (Physical Review Letters, Physical Review B, Science, Nature). Referee for National Science Foundation

The NMR Probe of High-T c Materials

Quantum magnetism and the theory of strongly correlated electrons

Publications Reinhard M. Noack

Reduced dimensionality. T. Giamarchi

The Misfit Strain Critical Point in the 3D Phase Diagrams of Cuprates. Abstract

H ψ = E ψ. Introduction to Exact Diagonalization. Andreas Läuchli, New states of quantum matter MPI für Physik komplexer Systeme - Dresden

DMFT for correlated bosons and boson-fermion mixtures

Quantum simulations, adiabatic transformations,

J. Phys.: Condens. Matter 10 (1998) L159 L165. Printed in the UK PII: S (98)90604-X

Quantum Choreography: Exotica inside Crystals

Non-magnetic states. The Néel states are product states; φ N a. , E ij = 3J ij /4 2 The Néel states have higher energy (expectations; not eigenstates)

WORLD SCIENTIFIC (2014)

LECTURE 3 WORM ALGORITHM FOR QUANTUM STATISTICAL MODELS

Magnetism and Superconductivity on Depleted Lattices

Magnetism and Superconductivity in Decorated Lattices

Angle-Resolved Two-Photon Photoemission of Mott Insulator

cond-mat/ Mar 1996

Quantum Criticality and Black Holes

Conductor Insulator Quantum

SOLID STATE PHYSICS. Second Edition. John Wiley & Sons. J. R. Hook H. E. Hall. Department of Physics, University of Manchester

Dynamical properties of strongly correlated electron systems studied by the density-matrix renormalization group (DMRG) Takami Tohyama

arxiv: v1 [cond-mat.str-el] 1 Jun 2007

Frustration without competition: the SU(N) model of quantum permutations on a lattice

A New look at the Pseudogap Phase in the Cuprates.

ANTIFERROMAGNETIC EXCHANGE AND SPIN-FLUCTUATION PAIRING IN CUPRATES

ELECTRON-HOLE ASYMMETRY IS THE KEY TO SUPERCONDUCTIVITY

Spin correlations in conducting and superconducting materials Collin Broholm Johns Hopkins University

Dual vortex theory of doped antiferromagnets

Quantum dynamics in many body systems

Metal-Insulator Transitions

The continuum limit of the integrable open XYZ spin-1/2 chain

4 Surfaces and Interfaces

Electronic structure calculations results from LDA+U method

Computational Approaches to Quantum Critical Phenomena ( ) ISSP. Fermion Simulations. July 31, Univ. Tokyo M. Imada.

Luigi Paolasini

2015 Summer School on Emergent Phenomena in Quantum Materials. Program Overview

New trends in density matrix renormalization

Resonant Inelastic X-ray Scattering on elementary excitations

Density matrix renormalization group study of a three- orbital Hubbard model with spin- orbit coupling in one dimension

Winter School for Quantum Magnetism EPFL and MPI Stuttgart Magnetism in Strongly Correlated Systems Vladimir Hinkov

Talk online at

Spinon magnetic resonance. Oleg Starykh, University of Utah

Orbital magnetic field effects in spin liquid with spinon Fermi sea: Possible application to (ET)2Cu2(CN)3

Quantum transitions of d-wave superconductors in a magnetic field

Quantum Field Theory and Condensed Matter Physics: making the vacuum concrete. Fabian Essler (Oxford)

Surface effects in frustrated magnetic materials: phase transition and spin resistivity

Dynamical phase transition and prethermalization. Mobile magnetic impurity in Fermi superfluids

One-dimensional systems. Spin-charge separation in insulators Tomonaga-Luttinger liquid behavior Stripes: one-dimensional metal?

The Oxford Solid State Basics

Real-Space Renormalization Group (RSRG) Approach to Quantum Spin Lattice Systems

Spin dynamics of S=1/2 Hesienberg AFM chains in magnetic fields. Sergei Zvyagin

Phase Transitions in Condensed Matter Spontaneous Symmetry Breaking and Universality. Hans-Henning Klauss. Institut für Festkörperphysik TU Dresden

arxiv:cond-mat/ v1 [cond-mat.str-el] 4 Sep 2006

Introduction to Theory of Mesoscopic Systems

Cooperative Phenomena

Numerical Methods in Many-body Physics

Charge and Energy Transfer Dynamits in Molecular Systems

Quantum phase transitions of insulators, superconductors and metals in two dimensions

Localization and electron-phonon interactions in disordered systems

quasi-particle pictures from continuous unitary transformations

Transcription:

X. Zotos - Research Publications After 2004 1. Phonon-Magnon Interaction in Low Dimensional Quantum Magnets Observed by Dynamic Heat Transport Measurements, M. Montagnese, M. Otter, X. Zotos et al., Physical Review Letters 110, 147206 (2013). 2. Spinon heat transport and spin-phonon interaction in the spin-1/2 Heisenberg chain cuprates Sr 2 CuO 3 and SrCuO 2, N. Hlubek, X. Zotos, S. Singh et al., Journal of Statistical Mechanics- Theory and Experiment, P03006 (2012). 3. Magnetic excitations in the spin-1 anisotropic antiferromagnet NiCl 2-4SC(NH 2 )(2), C. Psaroudaki, S.A. Zvyagin, J. Krzystek et al., Physical Review B85, 014412 (2012). 4. Finite-temperature Drude weight within the anisotropic Heisenberg chain, J. Herbrych, P. Prelovsek, X. Zotos, Physical Review B84, 155125 (2011). 5. On the nonlinear response of a particle interacting with fermions in a 1D lattice, X. Zotos, Journal of Statistical Mechanics - Theory and Experiment, L12003 (2010). 6. Thermal transport in a spin-1/2 Heisenberg chain coupled to a magnetic or nonmagnetic impurity, A. Metavitsiadis, X. Zotos, O.S. Barisic et al., Physical Review B81, 205101 (2010). 7. Incoherent transport induced by a single static impurity in a Heisenberg chain, O.S. Barisic, P. Prelovsek, A. Metavitsiadis, X. Zotos, Physical Review B80, 125118 (2009). 8. Finite temperature transport in disordered Heisenberg chains, A. Karahalios, A. Metavitsiadis, X. Zotos, A. Gorczyca, P. Prelovsek, Physical Review B79, 024425 (2009). 9. Thermal conductivity of a classical one-dimensional spin-phonon system, A.V. Savin, G.P. Tsironis, X. Zotos, Physical Review B75, 214305 (2007). 10. Thermal conductivity of one-dimensional spin-1/2 systems coupled to phonons, K. Louis, P. Prelovsek, X. Zotos, Physical Review B74, 235118 (2006). 11. Microcanonical Lanczos method, X. Zotos, Philosophical Magazine 86, 2591 (2006). 12. Spin conductance in one-dimensional spin-phonon systems, K. Louis, X. Zotos, Physical Review B72, 214415 (2005). 13. Thermal conductivity of a classical one-dimensional Heisenberg spin model, A.V. Savin, G.P. Tsironis, X. Zotos, Physical Review B72, 140402 (2005). 14. Issues on the Transport of One Dimensional Quantum Systems, X. Zotos, Journal of Physical Society of Japan Supplement 74, 173 (2005). 1

15. Anomalous scaling of conductivity in integrable fermion systems, P. Prelovsek, S. El Shawish, X. Zotos, and M. Long, Physical Review B70, 205129 (2004). 16. Diffusive transport in spin-1 chains at high temperatures, J. Karadamoglou and X. Zotos, Physical Review Letters 93, 177203 (2004). 17. High temperature thermal conductivity of 2-leg spin-1/2 ladders, X. Zotos, Physical Review Letters 92, 067202 (2004). 2

Before 2004 1. Finite Temperature Dynamical Correlations using the Microcanonical Ensemble and the Lanczos Algorithm, M. Long, P. Prelovsek, S. El Shawish, J. Karadamoglou and X. Zotos, Physical Review B68, 235106 (2003). 2. Transport in one dimensional quantum systems, X. Zotos and P. Prelovšek, review article to appear in the series Physics and Chemistry of Materials with Low Dimensional Structures, Kluwer Academic Publishers (2002). 3. Quantum Monte Carlo study of the three dimensional attractive Hubbard model, A. Sewer, X. Zotos and H. Beck, Physical Review B 66, 140504 (2002). 4. Ballistic transport in classical and quantum integrable systems, X. Zotos, Journal of Low Temperature Physics 126, 1185 (2002). 5. Reactive Hall constant of strongly correlated electrons, P. Prelovšek and X. Zotos, Physical Review B64, 235114 (2001). 6. Magnon dispersion and thermodynamics in CsNiF 3, J. Karadamoglou, N. Papanicolaou, X. Wang and X. Zotos, Physical Review B63, 224406 (2001). 7. Magnetization in Molecular Iron Rings, B. Normand, X. Wang, X. Zotos, D. Loss, Physical Review B63, 184409 (2001). 8. Ballistic Hall response, M. Long, F. Naef, P. Prelovšek and X. Zotos, Proceedings XXXVI Rencontres de Moriond Conference, EDP Sciences (2001). 9. Reactive Hall response, X. Zotos, F. Naef, M. Long, and P. Prelovšek, Physical Review Letters 85, 377 (2000). 10. Drude weight, integrable systems and the reactive Hall constant, X. Zotos, F. Naef, M. Long, and P. Prelovšek, Proceedings NATO ARW Open Problems in Strongly Correlated Electron Systems, Bled, Slovenia, Editor Kluwer (2000). 11. Thermodynamics of the spin-flop transition in a quantum XYZ chain, X. Wang, X. Zotos, J. Karadamoglou and N. Papanicolaou, Physical Review B61, 14303 (2000). 12. Hall constant of strongly correlated electrons on a ladder, P. Prelovšek, M. Long, T. Markež and X. Zotos, Physical Review Letters 83, 2785 (1999). 13. Finite temperature transport in integrable quantum many body systems, X. Zotos, F. Naef, P. Prelovšek, Proceedings Rencontres de Moriond Conference, Editions Frontières, (1999). 14. Cohesion and conductance of disordered metallic point contacts, J. Bürki, C.A. Stafford, X. Zotos, D. Baeriswyl, Physical Review B60, 5000 (1999). 3

15. Orbital magnetic susceptibility of the attractive Hubbard model, A. Sewer, H. Beck and X. Zotos, ACS 98 Proceedings, Physica C317-318, 475 (1999). 16. Autocorrelations from the transfer matrix DMRG method, F. Naef, X. Wang, X. Zotos, W. von der Linden, Physical Review B60, 359 (1999). 17. Finite temperature Drude weight of the one dimensional spin 1/2 Heisenberg model, X. Zotos, Physical Review Letters 82, 1764 (1999). 18. Solution of the infinite range t-j model, B. Binz, X. Zotos and D. Baeriswyl, Journal of Physics A31, 4225 (1998). 19. Spin and energy correlations in the one dimensional spin 1/2 Heisenberg model, F. Naef, X. Zotos, Journal of Physics C10, L183 (1998). 20. Statistics of Mass Aggregation in a Self-Gravitating One-Dimensional Gas, J.C. Bonvin, Ph.A. Martin, J. Piasecki and X. Zotos, Journal of Statistical Physics 91, 177 (1998). 21. Transport and conservation laws, X. Zotos, F. Naef and P. Prelovšek, Physical Review B55, 11029 (1997). 22. Integrability and ideal transport at finite temperatures, X. Zotos, H. Castella, P. Prelovšek, Proceedings XXXI Rencontres de Moriond Conference (1996). 23. Finite temperature mobility of a particle coupled to a fermion environment, H. Castella, X. Zotos, Physical Review B54, 4375 (1996). 24. Evidence for ideal conducting/insulating behavior in 1D integrable systems, X. Zotos, P. Prelovšek, Physical Review B53, 983 (1996). 25. Connection between low energy effective Hamiltonians and energy level statistics, M. DiStasio, X. Zotos, Physical Review Letters 74, 2050 (1995). 26. Integrability and ideal conductance at finite temperatures, H. Castella, X. Zotos, P. Prelovsek, Physical Review Letters 74, 972 (1995). 27. Phase diagram of the one-dimensional extended Hubbard model at quarter filling, F. Mila, X. Zotos, Europhysics Letters 24, 133 (1993). 28. Universality in the Spectra of Strongly Correlated Systems, M. Faas, B.D. Simons, X. Zotos, B.L. Altshuler, Physical Review B48, 5439 (1993). 29. Exact calculation of spectral properties of a particle interacting with a one dimensional fermionic system, H. Castella, X. Zotos, Physical Review B47, 16186 (1993). 30. Hole-hole correlations in the U = limit of the Hubbard model and the stability of the Nagaoka state, M. Long, X. Zotos, Physical Review B48, 317 (1993). 4

31. Variational treatment of the one-dimensional Peierls-Hubbard model: lattice dimerization and solitons, E. Jeckelmann, D. Baeriswyl and X. Zotos, Synthetic Metals 57, 4249 (1993). 32. Hole pairing and clustering in the two-dimensional t-j model, P. Prelovsek and X. Zotos, Physical Review B47, 5984 (1993). 33. Ground state energy and spin of a generalized statistics t-j model, M. Long and X. Zotos, Physical Review B45, 9932 (1992). 34. A geometrical view of the minus-sign problem, A. Muramatsu, G. Zumbach, X. Zotos, International Journal of Modern Physics C3, 185, (1992). 35. Study of a Hamiltonian describing orbital excitations, A. Shelankov, B. Möller, W. Weber, X. Zotos, Z. Physik B84, 221, (1991). 36. Gutzwiller wavefunction description of a particle in a fermionic bath, F. Gebhard and X.Zotos, Physical Review B43, 1176 (1991). 37. Correlation functions for the two dimensional Hubbard model, J. Carmello, M. Dzierzawa, X.Zotos, D. Baeriswyl, Physical Review B43, 598 (1991). 38. Dynamics of quasiparticles in 2D Hubbard model, D. Mattis, M. Dzierzawa, X. Zotos, Physical Review B42, 6787 (1990). 39. Single-hole effective masses in the t-j model, X.Zotos, P. Prelovsek, I. Sega, Physical Review B42, 8445 (1990). 40. The Cu d d excitation model: studies of the insulating limit, W. Weber, A.L. Shelankov, X. Zotos, Proc. Int. Conf. Materials and Mechanisms of Superconductivity - High Temperature Superconductors Stanford, USA (1989), North Holland, Amsterdam (1989). 41. Numerical simulations for many body problems, X. Zotos, M. Dzierzawa, Proceedings of NATO Advanced Study Institute on Applications of Statistical and Field Theory Methods to Condensed Matter, Plenum Press. 42. Numerical simulation of a one dimensional two band model, X. Zotos, W. Lehr, Proceedings of NATO Advanced Research Workshop on Interacting Electrons in Reduced Dimensions, 213 Plenum Press (1989). 43. Correlation functions for the two dimensional Hubbard model, J. Carmelo, D. Baeriswyl, X. Zotos, Proceedings of NATO Advanced Research Workshop on Interacting Electrons in Reduced Dimensions, 213 Plenum Press (1989). 44. Recent studies of the d-d excitation model, W. Weber, A.L. Shelankov, X. Zotos, Proceedings NEC Symposium, Springer (1989). 5

45. Quantum Monte Carlo study of a one dimensional two band fermion model, X. Zotos, W. Lehr, W. Weber, Zeitschrift für Physik B74 289, (1989). 46. Finite size system study of the d d excitation model, X. Zotos, A.L. Shelankov, and W. Weber, Physica C153, 1309 (1988). 47. A weak coupling limit of the d d excitation model for the high T c cuprates, A.L. Shelankov, X. Zotos, and W. Weber, Physica C153, 1307 (1988). 48. A Cu d d excitation model for the pairing in the high T c cuprates, W. Weber, A.L. Shelankov, and X. Zotos, Physica C153, 1305 (1988). 49. Correlations in the one dimensional almost half-filled band Hubbard model in the large U limit, X. Zotos, Physical Review B37, 5594 (1988). 50. Exact and numerical study of the effective hopping of a particle interacting with a fermionic bath in one dimension, X. Zotos, F. Pelzer, Physical Review B37, 5045 (1988). 51. Vortex Pairs in Rotating 3 He A in a Tilted Magnetic Field, K. Maki and X. Zotos, Physical Review B31, 3116 (1985). 52. Vortex States in Rotating 3 He A in a Weak Magnetic Field, X. Zotos, K. Maki, Physical Review B31, 7120 (1985). 53. Vortex Pair State in Rotating Superfluid 3 He A at Low Temperatures, K. Maki, X. Zotos, Physical Review B31, 177 (1985). 54. Magnetic Resonance and Vortex Pair State in 3 He A at Low Temperatures, X. Zotos, K. Maki, LT 17 Proceedings, post deadline paper. 55. Vortex Pair State in Rotating Superfluid 3 He A, K. Maki, X. Zotos, LT 17 Proceedings 1. 56. Magnetoresistance Measurements of V 3 Si-Evidence for Precursor Effects of the Martensitic Transformation, X. Zotos, O. Laborde, J.P. Senateur, Solid State Communications 50, 453 (1984). 57. Analytic Vortices and Magnetic Resonances in Rotating Superfluid 3 He A III, X. Zotos and K. Maki, Physical Review B30, 145 (1984). 58. Static and Dynamic Properties of 2-D Wigner Crystal in a Strong Magnetic Field, K. Maki and X. Zotos, Physical Review B28, 4349 (1983). 59. Quantum sine-gordon Thermodynamics X. Zotos, J. de Phys. Colloque C3, 477 (1983). 6

60. Bethe Ansatz Massive Thirring Model Thermodynamics: The Weak Coupling Limit X. Zotos, Physical Review B26, 2519 (1982). 61. Bethe Ansatz Quantum sine-gordon Thermodynamics III: Finite Temperature Excitation Spectrum X. Zotos and M. Fowler, Physical Review B26, 1430 (1982). 62. Bethe Ansatz Quantum sine-gordon Thermodynamics II: The Specific Heat, M. Fowler and X. Zotos, Physical Review B25, 5806 (1982). 63. Quantum sine-gordon Thermodynamics: The Bethe Ansatz Method, M. Fowler and X. Zotos, Physical Review B24, 2634 (1981). 64. Impurity conduction and minimum metallic conductivity in n-type InP subjected to a magnetic field, G. Biskupski, H. Dubois, O. Laborde, X. Zotos, Philosophical Magazine B. (GB), 42, 1 (1980). 7