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Related papers: Modulation-Doping a Correlated Electron Insulator

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We study the doping-driven Mott metal-insulator transition for multi-orbital Hubbard models with Hund's exchange coupling at finite temperatures. As in the single-orbital Hubbard model, the transition is of first-order within dynamical mean…

Strongly Correlated Electrons · Physics 2019-08-05 Jakob Steinbauer , Luca de' Medici , Silke Biermann

The reversible semiconductor-to-metal transition of vanadium dioxide (VO2) makes VO2-based coatings a promising candidate for thermochromic smart windows, reducing the energy consumption of buildings. We report low-temperature (320 degC)…

The physics of the metal-insulator transition (MIT) in vanadium dioxide remains a subject of intense interest. Because of the complicating effects of elastic strain on the phase transition, there is interest in comparatively strain-free…

Strongly Correlated Electrons · Physics 2015-04-08 Benjamin Huber-Rodriguez , Siu Yi Kwang , Will J. Hardy , Heng Ji , Chih-Wei Chen , Emilia Morosan , Douglas Natelson

Vanadium sesquioxide V2O3 is considered a textbook example of Mott-Hubbard physics. In this paper we present an extended optical study of its whole temperature/doping phase diagram as obtained by doping the pure material with M=Cr or Ti…

Strongly Correlated Electrons · Physics 2015-04-29 I. Lo Vecchio , L. Baldassarre , F. D'Apuzzo , O. Limaj , D. Nicoletti , A. Perucchi , L. Fan , P. Metcalf , M. Marsi , S. Lupi

A modulation-doping approach to control the carrier density of the high-density electron gas at a prototype polar/non-polar oxide interface is presented. It is shown that the carrier density of the electron gas at a GdTiO3/SrTiO3 interface…

Materials Science · Physics 2015-06-11 Tyler A. Cain , Pouya Moetakef , Clayton A. Jackson , Susanne Stemmer

Precise control of the chemical valence or oxidation state of vanadium in vanadium oxide thin films is highly desirable for not only fundamental research, but also technological applications that utilize the subtle change in the physical…

Materials Science · Physics 2015-06-23 Shinbuhm Lee , Tricia L. Meyer , Sungkyun Park , Takeshi Egami , Ho Nyung Lee

The metal-insulator transition (MIT) is one of the remarkable electrical transport properties of atomically thin molybdenum disulphide (MoS2). Although the theory of electron-electron interactions has been used in modeling the MIT phenomena…

Electrostatic control of the metal-insulator transition (MIT) in an oxide semiconductor could potentially impact the emerging field of oxide electronics. Vanadium dioxide is of particular interest due to the fact that the MIT happens in the…

Infrared (IR) transmittance tunable metal-insulator conversion was demonstrated on glass substrate by using thermochromic vanadium dioxide (VO2) as the active layer in three-terminal thin-film-transistor-type device with water-infiltrated…

Materials Science · Physics 2017-09-19 Takayoshi Katase , Kenji Endo , Hiromichi Ohta

Photo-doped Mott insulators can exhibit novel photocarrier transport and relaxation dynamics and non-equilibrium phases. However, time-resolved real-space imaging of these processes are still lacking. Here, we use scanning ultrafast…

The optical properties of vanadium dioxide ($VO_2$) can be tuned via metal-insulator transition. In this work different types of one-dimensional photonic structure-based microcavities that embed vanadium dioxide have been studied in the…

Optics · Physics 2022-08-30 Francesco Scotognella

Reconfigurable optical systems are the object of continuing, intensive research activities, as they hold great promise for realizing a new generation of compact, miniaturized, and flexible optical devices. However, current reconfigurable…

The electronic structure of vanadium sesquioxide in its different phases has been calculated using the screened exchange (sX) hybrid functional. The hybrid functional reproduces the electronic properties of all three phases, the…

Strongly Correlated Electrons · Physics 2013-03-22 Yuzheng Guo , Stewart J. Clark , John Robertson

Turning a pristine Mott insulator into a correlated metal by chemical doping is a common procedure in strongly correlated materials physics, e.g. underlying the phenomenology of high-$T_c$ cuprates. The ruthenate bilayer compound…

Strongly Correlated Electrons · Physics 2020-09-29 Frank Lechermann , Qiang Han , Andrew J. Millis

Recent reports reveal that isothermal chemical doping of hydrogen in correlated complex oxides such as perovskite nickelates (e.g. NdNiO3) can induce a metal-to-insulator transition (MIT) without the need for temperature modulation. In this…

Materials Science · Physics 2024-05-16 Ronald Warzoha , Brian Donovan , Yifei Sun , Elena Cimpoiasu , Shriram Ramanathan

Vanadium dioxide (VO2) is a thermochromic material that undergoes a phase transition from a monoclinic semiconducting state to a rutile metallic state at 68 degrees C, a temperature close to room temperature. This property makes VO2…

Tin doped indium oxide (ITO) thin films are being used extensively as transparent conductors in several applications. In the present communication, we report the electrical transport in DC magnetron sputtered ITO thin films in low…

Materials Science · Physics 2016-10-28 Deepak Kumar Kaushik , K Uday Kumar , A. Subrahmanyam

Heterointerfaces in complex oxide systems open new arenas in which to test models of strongly correlated material, explore the role of dimensionality in metal-insulator-transitions (MITs) and small polaron formation. Close to the quantum…

Strongly Correlated Electrons · Physics 2014-04-10 Daniel G. Ouellette , Pouya Moetakef , Tyler A. Cain , Jack Y. Zhang , Susanne Stemmer , David Emin , S. James Allen

The metal-insulator transition (MIT) observed in vanadium dioxide (VO2) has been a topic of great research interest for past decades, with the underlying physics yet not fully understood due to the complex electron interactions and…

Materials Science · Physics 2023-05-23 Atul Atul , Majid Ahmadi , Panagiotis Koutsogiannis , Heng Zhang , Bart J. Kooi

The debate about whether the insulating phases of vanadium dioxide (VO2) can be described by band theory or must be described by a theory of strong electron correlations remains unresolved even after decades of research. Energy-band…

Materials Science · Physics 2017-03-15 Sheng Xu , Xiao Shen , Kent A. Hallman , Richard F. Haglund , Sokrates T. Pantelides
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