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相关论文: Breakdown of Fermi Liquid Theory in Doped Mott Ins…

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We construct the low energy theory of a doped Mott insulator, such as the high-temperature superconductors, by explicitly integrating over the degrees of freedom far away from the chemical potential. For either hole or electron doping, a…

强关联电子 · 物理学 2008-11-26 Robert G. Leigh , Philip Phillips , Ting-Pong Choy

In strongly correlated electron systems, the emergence of states in the Mott gap in the single-particle spectrum following the doping of the Mott insulator is a remarkable feature that cannot be explained in a conventional rigid-band…

强关联电子 · 物理学 2015-08-20 Masanori Kohno

Hall and optical conductivity experiments on the cuprates indicate that the low-energy fermionic degrees of freedom in a doped Mott insulator posess a component that is dynamcially generated and hence determined by the temperature. We show…

强关联电子 · 物理学 2013-05-29 Shiladitya Chakraborty , Seungmin Hong , Philip Phillips

We expand on our earlier work (cond-mat/0612130, Phys. Rev. Lett. {\bf 99}, 46404 (2007)) in which we constructed the exact low-energy theory of a doped Mott insulator by explicitly integrating (rather than projecting) out the degrees of…

强关联电子 · 物理学 2009-11-13 Ting-Pong Choy , Robert G. Leigh , Philip Phillips , Philip D. Powell

We show here that many of the normal state properties of the cuprates can result from the new charge 2e bosonic field which we have recently (Phys. Rev. Lett. {\bf 99}, 46404 (2007) and Phys. Rev. B 77, 014512 (2008)) shown to exist in the…

强关联电子 · 物理学 2009-11-13 Ting-Pong Choy , Robert G. Leigh , Philip Phillips

We present a theoretical approach to describing the Mott transition of electrons on a two dimensional lattice that begins with the low energy effective theory of the Fermi liquid. The approach to the Mott transition must be characterized by…

强关联电子 · 物理学 2012-01-25 David F. Mross , T. Senthil

An intuitive interpretation of the relationship between the dispersion relation of the single-particle excitation in a metal and that of the spin excitation in a Mott insulator is presented, based on the results for the one- and…

强关联电子 · 物理学 2014-07-14 Masanori Kohno

Unravelling the nature of doping-induced transition between a Mott insulator and a weakly correlated metal is crucial to understanding novel emergent phases in strongly correlated materials. For this purpose, we study the evolution of…

强关联电子 · 物理学 2018-03-14 Yao Wang , Brian Moritz , Cheng-Chien Chen , Thomas P. Devereaux , Krzysztof Wohlfeld

The competition between antiferromagnetism and hole motion in two-dimensional Mott insulators lies at the heart of a doping-dependent transition from an anomalous metal to a conventional Fermi liquid. Condensed matter experiments suggest…

The evolution from an anomalous metallic phase to a Mott insulator within the two-dimensional Hubbard model is investigated by means of the Cellular Dynamical Mean-Field Theory. We show that the density-driven Mott metal-insulator…

强关联电子 · 物理学 2007-08-15 M. Civelli , M. Capone , S. S. Kancharla , O. Parcollet , G. Kotliar

A central issue of Mott physics, with symmetries being fully retained in the spin background, concerns the charge excitation. In a two-leg spin ladder with spin gap, an injected hole can exhibit either a Bloch wave or a density wave by…

强关联电子 · 物理学 2018-07-25 Zheng Zhu , D. N. Sheng , Zheng-Yu Weng

A central question in the high temperature cuprate superconductors is the fate of the parent Mott insulator upon charge doping. Here we use scanning tunneling microscopy to investigate the local electronic structure of lightly doped cuprate…

超导电性 · 物理学 2017-02-21 Peng Cai , Wei Ruan , Yingying Peng , Cun Ye , Xintong Li , Zhenqi Hao , Xingjiang Zhou , Dung-Hai Lee , Yayu Wang

I introduce a doped two-dimensional quantum dimer model describing a doped Mott insulator and retaining the original Fermi statistics of the electrons. This model shows a rich phase diagram including a d-wave hole-pair unconventional…

强关联电子 · 物理学 2008-04-24 Didier Poilblanc

The Mott transition is usually considered as resulting from the divergence of the effective mass of the quasiparticle in the Fermi-liquid theory; the dispersion relation around the Fermi level is considered to become flat towards the Mott…

强关联电子 · 物理学 2020-10-26 Masanori Kohno

We investigate the properties of the metallic state obtained by photo-doping carriers into a Mott insulator. In a strongly interacting system, these carriers have a long life-time, so that they can dissipate their kinetic energy to a phonon…

强关联电子 · 物理学 2013-03-21 Martin Eckstein , Philipp Werner

Trial wavefunctions, constructed explicitly from the unique 2-dimensional Mott insulating state with antiferromagnetic order, are proposed to describe the low-energy states of a Mott insulator slightly doped with holes or electrons. With…

强关联电子 · 物理学 2009-11-07 T. K. Lee , Chang-Ming Ho , Naoto Nagaosa , Wei-Cheng Lee

The doped Mott insulator in one dimension has been studied based on the phase Hamiltonian with the Umklapp scattering process, in which the charge degree of freedom is described by the quantum sine-Gordon model. The well-known equivalence…

凝聚态物理 · 物理学 2009-10-28 Michiyasu Mori , Hidetoshi Fukuyama

We studied the in-plane dynamic and static charge conductivity of electron doped Sr2IrO4 using optical spectroscopy and DC transport measurements. The optical conductivity indicates that the pristine material is an indirect semiconductor…

Starting from the effective low energy theory of a doped Mott insulator, we show that the effective carrier density in the underdoped regime agrees with a two - fluid description. Namely, it has distinct temperature independent and…

强关联电子 · 物理学 2013-05-29 Shiladitya Chakraborty , Philip Phillips

Quantum spin liquid states, in which spins are quantum-mechanically delocalized in direction, have been so far studied for charge-localized Mott insulators arising from strong repulsive interaction. Recently, however, it was found that the…

强关联电子 · 物理学 2022-02-15 Hiroshi Oike , Kazuya Miyagawa , Hiromi Taniguchi , Hiroyuki Okamoto , Kazushi Kanoda
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