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Showing 1 to 20 of 28 for “"Strongly Correlated Electron Systems"”.

  1. Magnetism in strongly correlated electron systems

    … two very different examples of magnetism in strongly correlated electron systems, the high-T$\sb{c}$ materials and heavy fermions.

    uiuc Repository record for Magnetism in strongly correlated electron systems (opens in a new tab)

  2. Spectral properties of strongly correlated electron systems

    … of the cluster-perturbation theory (CPT) to systems with spontaneous broken symmetry. Our method accounts for both short-range correlations and long-range order. Short-range correlations are accurately taken into account via the exact diagonalization of finite clusters. Long-range order is …

    wurz-thes Repository record for Spectral properties of strongly correlated electron systems (opens in a new tab)

  3. Frustrated Magnetism in Strongly Correlated Electron Systems

    … and their corresponding excitations in several strongly correlated electron systems, where exotic orderings can be induced as a result of magnetic frustration and quantum fluctuations. We show that emergent spin textures can arise close to a magnetic field-induced quantum critical point, when …

    rice Repository record for Frustrated Magnetism in Strongly Correlated Electron Systems (opens in a new tab)

  4. Anistropic phenomena in strongly correlated electron systems

    … thesis is concerned with momentum anisotropy in strongly correlated electron systems, and explores its origin and its consequences through two contrasting projects. The first is a study of the temperature dependences of magnetotransport quantities in the normal state of the cuprate …

    birmingham Repository record for Anistropic phenomena in strongly correlated electron systems (opens in a new tab)

  5. Non-perturbative approaches to strongly correlated electron systems

    "Strong electron correlation phenomena are ubiquitous, such as unconventional superconductivity and the metal-insulator transitions. Having a proper understanding of strongly correlated electron systems requires a non-perturbative analysis because Fermi liquid theory inevitably breaks down due to …

    uiuc Repository record for Non-perturbative approaches to strongly correlated electron systems (opens in a new tab)

  6. Field theoretical methods for strongly correlated electron systems

    … computational tool to study quantum many-body systems. They have been applied successfully to the study of various systems of strongly correlated electrons in condensed matter physics, particularly to problems where a non-perturbative treatment is required.

    uiuc Repository record for Field theoretical methods for strongly correlated electron systems (opens in a new tab)

  7. Field theoretical methods for strongly correlated electron systems

    … computational tool to study quantum many-body systems. They have been applied successfully to the study of various systems of strongly correlated electrons in condensed matter physics, particularly to problems where a non-perturbative treatment is required. In the first part of this thesis we …

    uiuc Repository record for Field theoretical methods for strongly correlated electron systems (opens in a new tab)

  8. High magnetic field study of strongly correlated electron systems

    The physics of strongly correlated electron systems is remarkably rich and complex with the interactions between electrons giving rise to a diverse range of physical phenomena including ferromagnetism, metal-insulator transition and superconductivity. Observation of quantum oscillations in the …

    cambridge Repository record for High magnetic field study of strongly correlated electron systems (opens in a new tab)

  9. Phases and phase transitions of strongly correlated electron systems

    Different experiments on strongly correlated materials have shown phenomena which are not consistent with our conventional understandings. We still do not have a general framework to explain these properties. Developing such a general framework is much beyond the scope of this thesis, but here we …

    mit Repository record for Phases and phase transitions of strongly correlated electron systems (opens in a new tab)

  10. Local Magnetism in Strongly Correlated Electron Systems with Orbital Degrees of Freedom

    … behavior and the microscopic physics of strongly correlated electron systems with orbital degrees of freedom through the use of effective models. My dissertation focuses on the sub-class of these materials where electrons appear to be localized by interactions, and magnetic ions have well …

    umn Repository record for Local Magnetism in Strongly Correlated Electron Systems with Orbital Degrees of Freedom (opens in a new tab)

  11. Collective modes in strongly correlated electron systems measured with momentum-resolved electron energy-loss spectroscopy

    "Strongly correlated electron systems comprise an exciting area of research in condensed matter physics due to the variety of quantum phenomena that results from the strong interactions between the electrons. Strongly correlated materials can be described in terms of weakly interacting, emergent …

    uiuc Repository record for Collective modes in strongly correlated electron systems measured with momentum-resolved electron energy-loss spectroscopy (opens in a new tab)

  12. Probing the Dynamics of Pressure- and Magnetic Field -Tuned Transitions in Strongly-Correlated Electron Systems: Raman Scattering Studies

    … regime, characterized by a collision-dominated electronic scattering response whose scattering rate Gamma decreases with decreasing temperature; (ii) a spin-disorder scattering regime, characterized by a collision-dominated electronic scattering response whose scattering rate Gamma scales with …

    uiuc Repository record for Probing the Dynamics of Pressure- and Magnetic Field -Tuned Transitions in Strongly-Correlated Electron Systems: Raman Scattering Studies (opens in a new tab)

  13. Strongly Correlated Electrons on a Triangular Lattice

    … thesis we are going to study the properties of strongly correlated electron systems (SCES) using analytical, phenomenological and computational methods. In the introductory chapter we will discuss generally the problem of strongly correlated electron systems and the methods that are used to …

    uiuc Repository record for Strongly Correlated Electrons on a Triangular Lattice (opens in a new tab)

  14. Emergent Quantum Phenomena in Magic-Angle Twisted Graphene Superlattices

    Strongly correlated electron systems have attracted considerable interest due to their ability to host a wealth of emergent quantum phenomena. Recently, moiré engineering, also known as twistronics, has emerged as a new approach for creating twodimensional correlated materials. In this thesis, I …

    mit Repository record for Emergent Quantum Phenomena in Magic-Angle Twisted Graphene Superlattices (opens in a new tab)

  15. Quantum Tuning and Emergent Phases in Charge and Spin Ordered Materials

    … been the emergence of new states of matter from strongly correlated electron systems. A few limited examples would be the emergence of unconventional superconductivity in the high-T$_c$ superconductors and heavy-fermion systems, the appearance of the skyrmion magnetic vortex state in MnSi and …

    cambridge Repository record for Quantum Tuning and Emergent Phases in Charge and Spin Ordered Materials (opens in a new tab)

  16. Cluster Dynamical Mean-Field Theory: Applications to High-Tc Cuprates and to Quantum Chemistry

    … mean-field approximation to study problems in strongly correlated electron systems, including high-Tc cuprate superconductors as well as a few quantum chemical reference systems. We start with an introduction to the background of the interacting electron systems, followed by a brief description …

    columbia-diss Repository record for Cluster Dynamical Mean-Field Theory: Applications to High-Tc Cuprates and to Quantum Chemistry (opens in a new tab)

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