Correlations in Moiré Heterostructures

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (122 download)

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Book Synopsis Correlations in Moiré Heterostructures by : Aaron Layne Sharpe

Download or read book Correlations in Moiré Heterostructures written by Aaron Layne Sharpe and published by . This book was released on 2020 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Moiré patterns in van der Waals heterostructures are a readily realizable class of 2D superlattices with electronic properties distinct from those of the parent materials that can be controlled by the composition and relative orientations of layers. The large artificial superlattice generates minibands that disperse on a finer energy scale in a significantly smaller mini Brillouin zone. I begin with transport measurements in highly aligned graphene/hexagonal boron nitride (hBN) heterostructures, a high electron mobility superlattice with miniband edges and Van Hove singularities that are accessible via electrostatic gating. By using recently developed absorptive pinhole collimators, consisting of absorptive sidewalls between a pair of collinear slits, it is possible to populate and detect a narrow window of $k$-states. Low-field transport measurements yield results consistent with ballistic Monte Carlo simulations based on numerical bandstructure calculations when the superlattice has been tuned to exhibit non-circular Fermi surfaces. Subsequent scanning gate measurements spatially image the non-circular Fermi surface, raising the possibility of using absorptive pinhole collimators as geometric valley filters. A number of moiré superlattices have recently emerged that exhibit flat electronic bands, making them ideal for exploring strongly correlated physics. The flat bands in magic-angle twisted bilayer graphene (tBLG) and ABC-trilayer graphene aligned with hBN (ABC-TLG/hBN) have been shown to give rise to correlated insulators [1,2]. An amazing recent discovery is that tBLG becomes superconducting when doped slightly away from two holes per site, reminiscent of high temperature superconductors [3]. Understanding the mechanism of high-transition-temperature (high-$T_c$) superconductivity is a central problem in condensed matter physics. It is highly desirable to study a tunable Hubbard system, in which systematic investigations of the unconventional superconductivity and its evolution with the Hubbard parameters can deepen our understanding of high-$T_c$ superconductivity. I begin with a report of signatures of tunable superconductivity in ABC-TLG/hBN. Unlike in tBLG, theoretical calculations show that under a vertical displacement field, the ABC-TLG/hBN heterostructure features an isolated flat valence miniband associated with a Hubbard model on a triangular superlattice [2,4]. Signatures of superconductivity emerge below 1 kelvin for the electron- and hole-doped sides of the one-quarter-filling correlated state. The electronic behaviour in the ABC-TLG/hBN superlattice is expected to depend sensitively on the interplay between electron--electron interactions and the miniband bandwidth. By varying the vertical displacement field, transitions from the candidate superconductor to correlated insulator and metallic phases are observed. Superconductivity is one of many possible ground states in flat band systems when electron-electron interactions dominate. I present evidence of an incipient Chern insulating state at integer filling of the flat band in both tBLG and ABC-TLG/hBN. Notably, in tBLG, the magnetization of the sample can be reversed by applying a small direct current. Additionally, when tilting a tBLG sample in an external magnetic field, the ferromagnetism is highly anisotropic. Because spin-orbit coupling is negligible in graphene [5], such behavior is unlikely to come from spin, but rather favors theories in which the ferromagnetism is orbital. For an in-plane field larger than $5\ \mathrm{T}$, the out-of-plane magnetization is destroyed, suggesting a transition to a new phase. At integer filling of these strongly correlated moiré systems, it is natural to expect the possibility of spontaneous spin/valley polarization. However, there is the possibility of fractional quantum anomalous Hall insulators at fractional filling if interactions are strong enough. I report evidence of ferromagnetism at fractional filling in both tBLG and ABC-TLG/hBN. These states depend very sensitively on the control parameters in the moiré system, to the point where the results in tBLG were not repeatable between cooldowns of the same device. However, the state in ABC-TLG/hBN is much more robust, exhibiting prominent ferromagnetic hysteresis behavior with large anomalous Hall resistivity in a broad region of density. In ABC-TLG/hBN, not only the magnitude of the anomalous Hall signal, but also the sign of the hysteretic ferromagnetic response can be modulated by tuning the carrier density and displacement field. The plethora of interesting ground states found thus far highlights the exciting opportunities for exploring strongly correlated physics enabled in moiré superlattices.

Two-Dimensional Transition-Metal Dichalcogenides

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Publisher : John Wiley & Sons
ISBN 13 : 3527838767
Total Pages : 357 pages
Book Rating : 4.5/5 (278 download)

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Book Synopsis Two-Dimensional Transition-Metal Dichalcogenides by : Chi Sin Tang

Download or read book Two-Dimensional Transition-Metal Dichalcogenides written by Chi Sin Tang and published by John Wiley & Sons. This book was released on 2023-11-08 with total page 357 pages. Available in PDF, EPUB and Kindle. Book excerpt: Two-Dimensional Transition-Metal Dichalcogenides Comprehensive resource covering rapid scientific and technological development of polymorphic two-dimensional transition-metal dichalcogenides (2D-TMDs) over a range of disciplines and applications Two-Dimensional Transition-Metal Dichalcogenides: Phase Engineering and Applications in Electronics and Optoelectronics provides a discussion on the history of phase engineering in 2D-TMDs as well as an in-depth treatment on the structural and electronic properties of 2D-TMDs in their respective polymorphic structures. The text addresses different forms of in-situ synthesis, phase transformation, and characterization methods for 2D-TMD materials and provides a comprehensive treatment of both the theoretical and experimental studies that have been conducted on 2D-TMDs in their respective phases. Two-Dimensional Transition-Metal Dichalcogenides includes further information on: Thermoelectric, fundamental spin-orbit structures, Weyl semi-metallic, and superconductive and related ferromagnetic properties that 2D-TMD materials possess Existing and prospective applications of 2D-TMDs in the field of electronics and optoelectronics as well as clean energy, catalysis, and memristors Magnetism and spin structures of polymorphic 2D-TMDs and further considerations on the challenges confronting the utilization of TMD-based systems Recent progress of mechanical exfoliation and the application in the study of 2D materials and other modern opportunities for progress in the field Two-Dimensional Transition-Metal Dichalcogenides provides in-depth review introducing the electronic properties of two-dimensional transition-metal dichalcogenides with updates to the phase engineering transition strategies and a diverse range of arising applications, making it an essential resource for scientists, chemists, physicists, and engineers across a wide range of disciplines.

Sketches of Physics

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Publisher : Springer Nature
ISBN 13 : 3031324692
Total Pages : 284 pages
Book Rating : 4.0/5 (313 download)

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Book Synopsis Sketches of Physics by : Roberta Citro

Download or read book Sketches of Physics written by Roberta Citro and published by Springer Nature. This book was released on 2023-10-16 with total page 284 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is a journey through the wonders of physics, the special thousandth volume of the renowned Lecture Notes in Physics book series. From quantum physics to solar physics, this volume showcases the beauty of physics in various fields. Written by series editors and colleagues, these essays are accessible to non-specialists and graduate-level students alike, making for an intriguing read for anyone interested in learning about physics beyond their own field of study. Explore the historical development of the series with two insightful forewords. List of essays: A New Era of Quantum Materials Mastery and Quantum Simulators In and Out of Equilibrium Evaluation and Utility of Wilsonian Naturalness The Geometric Phase: Consequences in Classical and Quantum Physics The Coming Decades of Quantum Simulation Insights into Complex Functions Exploring the Hottest Atmosphere with the Parker Solar Probe A Primer on the Riemann Hypothesis

Atomic and Electronic Properties of 2D Moiré Interfaces

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Publisher : Springer Nature
ISBN 13 : 3031120930
Total Pages : 148 pages
Book Rating : 4.0/5 (311 download)

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Book Synopsis Atomic and Electronic Properties of 2D Moiré Interfaces by : Astrid Weston

Download or read book Atomic and Electronic Properties of 2D Moiré Interfaces written by Astrid Weston and published by Springer Nature. This book was released on 2022-10-06 with total page 148 pages. Available in PDF, EPUB and Kindle. Book excerpt: This thesis provides the first atomic length-scale observation of the structural transformation (referred to as lattice reconstruction) that occurs in moiré superlattices of twisted bilayer transition metal dichalcogenides (TMDs) at low (θ 2 ̊) twist angles. Such information is essential for the fundamental understanding of how manipulating the rotational twist-angle between two adjacent 2-dimensional crystals subsequently affects their optical and electrical properties./ppStudies using Scanning transmission electron microscopy (STEM), a powerful tool for atomic-scale imaging, were limited due to the complexity of the (atomically-thin) sample fabrication requirements. This work developed a unique way to selectively cut and re-stack monolayers of TMDs with a controlled rotational twist angle which could then be easily suspended on a TEM grid to meet the needs of the atomically thin sample requirements. The fabrication technique enabled the study of the two common stacking-polytypes including 3R and 2H (using MoS2 and WS2 as the example) as well as their structural evolution with decreasing twist-angle./ppAtomic-scale studies were followed by a comprehensive investigation of their electronic properties using scanning probe microscopy and electrical transport measurements of the artificially-engineered structures. The electronic structure of two common stacking-polytypes (3R and 2H) were strikingly different, as revealed by conductive atomic force microscopy. Further studies focused on the 3R-stacking polytype to reveal room-temperature out-of-plane ferroelectricity using tools such as kelvin probe force microscopy, scanning electron microscopy and electrical transport measurements. This work highlights that the unique intrinsic properties of TMDs (i.e. semiconductors with strongly light-matter interaction) combined with the additional twisted degree-of-freedom has great potential to create atomically thin transistors/LEDs with built-in memory storage functions and will further aid in the development of the next generation of optoelectronics.

Strong Correlations and Topology in Novel Condensed Matter Platforms

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (134 download)

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Book Synopsis Strong Correlations and Topology in Novel Condensed Matter Platforms by : Ajesh Kumar

Download or read book Strong Correlations and Topology in Novel Condensed Matter Platforms written by Ajesh Kumar and published by . This book was released on 2022 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: This dissertation presents a study of various phenomena in quantum condensed matter physics by focusing on their realization in promising novel highly-tunable experimental platforms. Chapters 2 − 4 focus on the design and theoretical study of different moiré material platforms that can simulate strongly correlated phenomena that have proved difficult to understand for many years. Chapter 2 proposes a transition metal dichalcogenide trilayer moiré heterostructure that can realize heavy-fermion quantum criticality, and is based on Ref. [113]. Chapter 3 describes low-energy collective modes of the correlated insulators in magic-angle twisted bilayer graphene and gives a simple physical interpretation of them. This is based on Ref. [115]. Chapter 4 proposes twisted bilayer graphene in a perpendicular magnetic field as a quantum simulator of non-Fermi liquid behavior, and is based on Ref. [111]. Chapter 5 focuses on realizing a Floquet symmetry protected topological phase in a superconducting qubit arrays and trapped ion quantum processors. It discusses ways to detect the topological phase, which are typically hidden to simple local probes, and is based on Ref. [112]. Chapter 6 (based on Ref. [114]) studies phase transitions involving quasiparticles whose motion is intrinsically constrained. Two-dimensional crystals provide a concrete realization of this problem and our results provide strong constraints on how these crystals can quantum melt. Finally, Chapter 7 discusses some open questions related to the material presented in this thesis

Quantum Hall Effects

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Publisher : World Scientific
ISBN 13 : 9812700323
Total Pages : 741 pages
Book Rating : 4.8/5 (127 download)

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Book Synopsis Quantum Hall Effects by : Zyun Francis Ezawa

Download or read book Quantum Hall Effects written by Zyun Francis Ezawa and published by World Scientific. This book was released on 2008 with total page 741 pages. Available in PDF, EPUB and Kindle. Book excerpt: A pedagogical and self-contained discussion on monolayer and bilayer quantum Hall systems is given in this volume in a field-theoretical framework, with an introduction to quantum field theory, anyon physics and Chem-Simons gauge theory.

Frontiers in Optics and Photonics

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Publisher : Walter de Gruyter GmbH & Co KG
ISBN 13 : 3110710706
Total Pages : 1866 pages
Book Rating : 4.1/5 (17 download)

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Book Synopsis Frontiers in Optics and Photonics by : Federico Capasso

Download or read book Frontiers in Optics and Photonics written by Federico Capasso and published by Walter de Gruyter GmbH & Co KG. This book was released on 2021-06-08 with total page 1866 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book provides a cutting-edge research overview on the latest developments in the field of Optics and Photonics. All chapters are authored by the pioneers in their field and will cover the developments in Quantum Photonics, Optical properties of 2D Materials, Optical Sensors, Organic Opto-electronics, Nanophotonics, Metamaterials, Plasmonics, Quantum Cascade lasers, LEDs, Biophotonics and biomedical photonics and spectroscopy.

2D Excitonic Materials and Devices

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Publisher : Elsevier
ISBN 13 : 0443193932
Total Pages : 270 pages
Book Rating : 4.4/5 (431 download)

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Book Synopsis 2D Excitonic Materials and Devices by :

Download or read book 2D Excitonic Materials and Devices written by and published by Elsevier. This book was released on 2023-11-23 with total page 270 pages. Available in PDF, EPUB and Kindle. Book excerpt: Semiconductors and Semimetals series, highlights new advances in the field, with this new volume presenting interesting chapters. Each chapter is written by an international board of authors. Provides the latest information on cancer research Offers outstanding and original reviews on a range of cancer research topics Serves as an indispensable reference for researchers and students alike

Photonic Quantum Technologies

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Publisher : John Wiley & Sons
ISBN 13 : 3527837434
Total Pages : 910 pages
Book Rating : 4.5/5 (278 download)

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Book Synopsis Photonic Quantum Technologies by : Mohamed Benyoucef

Download or read book Photonic Quantum Technologies written by Mohamed Benyoucef and published by John Wiley & Sons. This book was released on 2023-05-04 with total page 910 pages. Available in PDF, EPUB and Kindle. Book excerpt: Photonic Quantum Technologies Brings together top-level research results to enable the development of practical quantum devices In Photonic Quantum Technologies: Science and Applications, the editor Mohamed Benyoucef and a team of distinguished scientists from different disciplines deliver an authoritative, one-stop overview of up-to-date research on various quantum systems. This unique book reviews the state-of-the-art research in photonic quantum technologies and bridges the fundamentals of the field with applications to provide readers from academia and industry, in one-location resource, with cutting-edge knowledge they need to have to understand and develop practical quantum systems for application in e.g., secure quantum communication, quantum metrology, and quantum computing. The book also addresses fundamental and engineering challenges en route to workable quantum devices and ways to circumvent or overcome them. Readers will also find: A thorough introduction to the fundamentals of quantum technologies, including discussions of the second quantum revolution (by Nobel Laureate Alain Aspect), solid-state quantum optics, and non-classical light and quantum entanglement Comprehensive explorations of emerging quantum technologies and their practical applications, including quantum repeaters, satellite-based quantum communication, quantum networks, silicon quantum photonics, integrated quantum systems, and future vision Practical discussions of quantum technologies with artificial atoms, color centers, 2D materials, molecules, atoms, ions, and optical clocks Perfect for molecular and solid-state physicists, Photonic Quantum Technologies: Science and Applications will also benefit industrial and academic researchers in photonics and quantum optics, graduate students in the field; engineers, chemists, and computer and material scientists.

Optoelectronic Properties of Graphene-Based van der Waals Hybrids

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Publisher : Springer Nature
ISBN 13 : 3030596273
Total Pages : 277 pages
Book Rating : 4.0/5 (35 download)

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Book Synopsis Optoelectronic Properties of Graphene-Based van der Waals Hybrids by : Kallol Roy

Download or read book Optoelectronic Properties of Graphene-Based van der Waals Hybrids written by Kallol Roy and published by Springer Nature. This book was released on 2020-10-21 with total page 277 pages. Available in PDF, EPUB and Kindle. Book excerpt: This thesis deals with the development and in-depth study of a new class of optoelectronic material platform comprising graphene and MoS_2, in which MoS_2 is used essentially to sensitize graphene and lead to unprecedently high gain and novel opto-electronic memory effects. The results presented here open up the possibility of designing a new class of photosensitive devices which can be utilized in various optoelectronic applications including biomedical sensing, astronomical sensing, optical communications, optical quantum information processing and in applications requiring low intensity photodetection and number resolved single photon detection.

2D Monoelemental Materials (Xenes) and Related Technologies

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Publisher : CRC Press
ISBN 13 : 1000562840
Total Pages : 166 pages
Book Rating : 4.0/5 (5 download)

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Book Synopsis 2D Monoelemental Materials (Xenes) and Related Technologies by : Zongyu Huang

Download or read book 2D Monoelemental Materials (Xenes) and Related Technologies written by Zongyu Huang and published by CRC Press. This book was released on 2022-04-19 with total page 166 pages. Available in PDF, EPUB and Kindle. Book excerpt: Monoelemental 2D materials called Xenes have a graphene-like structure, intra-layer covalent bond, and weak van der Waals forces between layers. Materials composed of different groups of elements have different structures and rich properties, making Xenes materials a potential candidate for the next generation of 2D materials. 2D Monoelemental Materials (Xenes) and Related Technologies: Beyond Graphene describes the structure, properties, and applications of Xenes by classification and section. The first section covers the structure and classification of single-element 2D materials, according to the different main groups of monoelemental materials of different components and includes the properties and applications with detailed description. The second section discusses the structure, properties, and applications of advanced 2D Xenes materials, which are composed of heterogeneous structures, produced by defects, and regulated by the field. Features include: Systematically detailed single element materials according to the main groups of the constituent elements Classification of the most effective and widely studied 2D Xenes materials Expounding upon changes in properties and improvements in applications by different regulation mechanisms Discussion of the significance of 2D single-element materials where structural characteristics are closely combined with different preparation methods and the relevant theoretical properties complement each other with practical applications Aimed at researchers and advanced students in materials science and engineering, this book offers a broad view of current knowledge in the emerging and promising field of 2D monoelemental materials.

Angle-Resolved Photoemission Spectroscopy Studies of 2D Material Heterostructures

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Publisher : Springer Nature
ISBN 13 : 981151447X
Total Pages : 90 pages
Book Rating : 4.8/5 (115 download)

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Book Synopsis Angle-Resolved Photoemission Spectroscopy Studies of 2D Material Heterostructures by : Eryin Wang

Download or read book Angle-Resolved Photoemission Spectroscopy Studies of 2D Material Heterostructures written by Eryin Wang and published by Springer Nature. This book was released on 2019-12-05 with total page 90 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book focuses on angle-resolved photoemission spectroscopy studies on novel interfacial phenomena in three typical two-dimensional material heterostructures: graphene/h-BN, twisted bilayer graphene, and topological insulator/high-temperature superconductors. Since the discovery of graphene, two-dimensional materials have proven to be quite a large “family”. As an alternative to searching for other family members with distinct properties, the combination of two-dimensional (2D) materials to construct heterostructures offers a new platform for achieving new quantum phenomena, exploring new physics, and designing new quantum devices. By stacking different 2D materials together and utilizing interfacial periodical potential and order-parameter coupling, the resulting heterostructure’s electronic properties can be tuned to achieve novel properties distinct from those of its constituent materials. This book offers a valuable reference guide for all researchers and students working in the area of condensed matter physics and materials science.

Information, Physics, and Computation

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Publisher : Oxford University Press
ISBN 13 : 019857083X
Total Pages : 584 pages
Book Rating : 4.1/5 (985 download)

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Book Synopsis Information, Physics, and Computation by : Marc Mézard

Download or read book Information, Physics, and Computation written by Marc Mézard and published by Oxford University Press. This book was released on 2009-01-22 with total page 584 pages. Available in PDF, EPUB and Kindle. Book excerpt: A very active field of research is emerging at the frontier of statistical physics, theoretical computer science/discrete mathematics, and coding/information theory. This book sets up a common language and pool of concepts, accessible to students and researchers from each of these fields.

Novel Optical Materials

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Publisher : World Scientific
ISBN 13 : 9811280614
Total Pages : 322 pages
Book Rating : 4.8/5 (112 download)

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Book Synopsis Novel Optical Materials by : Francesco Simoni

Download or read book Novel Optical Materials written by Francesco Simoni and published by World Scientific. This book was released on 2023-11-24 with total page 322 pages. Available in PDF, EPUB and Kindle. Book excerpt: The investigation on novel optical materials with unprecedented optical properties is of paramount importance for the development of advanced applications in many fields having a strong impact on our everyday lives such as biomedicine, food and agriculture security, optical communication and information technology, etc. Moreover, the interaction of light with matter in the past decades has allowed the quick growth of new disciplines such as biophotonics, covering all aspects of this interaction with biological materials; nanophotonics, investigating the optical behavior of nanostructures; opto-mechanics, going from optical manipulation of small objects to optical control of micro- and nano-robots.This book comprises timely contributions from active research groups covering several classes of materials and processes including nano-structured plasmonic and photonic materials, 2-D materials, photo-polymers, liquid crystals, photo-sensitive and opto-thermal, and other specially engineered materials.Novel Optical Materials will serve as a useful reference for researchers, engineers, and optical and materials scientists in both industry and academia. It is also an excellent supplement and reference for graduate courses in materials science, physics, and optical engineering.

Two-Dimensional Semiconductors

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Publisher : John Wiley & Sons
ISBN 13 : 3527344969
Total Pages : 192 pages
Book Rating : 4.5/5 (273 download)

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Book Synopsis Two-Dimensional Semiconductors by : Jingbo Li

Download or read book Two-Dimensional Semiconductors written by Jingbo Li and published by John Wiley & Sons. This book was released on 2020-04-13 with total page 192 pages. Available in PDF, EPUB and Kindle. Book excerpt: In-depth overview of two-dimensional semiconductors from theoretical studies, properties to emerging applications! Two-dimensional (2D) materials have attracted enormous attention due to their exotic properties deriving from their ultrathin dimensions. 2D materials, such as graphene, transition metal dichalcogenides, transition metal oxides, black phosphorus and boron nitride, exhibit versatile optical, electronic, catalytic and mechanical properties, thus can be used in a wide range of applications, including electronics, optoelectronics and optical applications. Two-Dimensional Semiconductors: Synthesis, Physical Properties and Applications provides an in-depth view of 2D semiconductors from theoretical studies, properties to applications, taking into account the current state of research and development. It introduces various preparation methods and describes in detail the physical properties of 2D semiconductors including 2D alloys and heterostructures. The covered applications include, but are not limited to, field-effect transistors, spintronics, solar cells, photodetectors, light-emitting diode, sensors and bioelectronics. * Highly topical: 2D materials are a rapidly advancing field that attracts increasing attention * Concise overview: covers theoretical studies, preparation methods, physical properties, potential applications, the challenges and opportunities * Application oriented: focuses on 2D semiconductors that can be used in various applications such as field-effect transistors, solar cells, sensors and bioelectronics * Highly relevant: newcomers as well as experienced researchers in the field of 2D materials will benefit from this book Two-Dimensional Semiconductors: Synthesis, Physical Properties and Applications is written for materials scientists, semiconductor and solid state physicists, electrical engineers, and readers working in the semiconductor industry.

The Physics of Graphene

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Publisher : Cambridge University Press
ISBN 13 : 1108597475
Total Pages : 441 pages
Book Rating : 4.1/5 (85 download)

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Book Synopsis The Physics of Graphene by : Mikhail I. Katsnelson

Download or read book The Physics of Graphene written by Mikhail I. Katsnelson and published by Cambridge University Press. This book was released on 2020-03-19 with total page 441 pages. Available in PDF, EPUB and Kindle. Book excerpt: Leading graphene research theorist Mikhail I. Katsnelson systematically presents the basic concepts of graphene physics in this fully revised second edition. The author illustrates and explains basic concepts such as Berry phase, scaling, Zitterbewegung, Kubo, Landauer and Mori formalisms in quantum kinetics, chirality, plasmons, commensurate-incommensurate transitions and many others. Open issues and unsolved problems introduce the reader to the latest developments in the field. New achievements and topics presented include the basic concepts of Van der Waals heterostructures, many-body physics of graphene, electronic optics of Dirac electrons, hydrodynamics of electron liquid and the mechanical properties of one atom-thick membranes. Building on an undergraduate-level knowledge of quantum and statistical physics and solid-state theory, this is an important graduate textbook for students in nanoscience, nanotechnology and condensed matter. For physicists and material scientists working in related areas, this is an excellent introduction to the fast-growing field of graphene science.

Defects in Two-Dimensional Materials

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Publisher : Elsevier
ISBN 13 : 032390310X
Total Pages : 434 pages
Book Rating : 4.3/5 (239 download)

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Book Synopsis Defects in Two-Dimensional Materials by : Rafik Addou

Download or read book Defects in Two-Dimensional Materials written by Rafik Addou and published by Elsevier. This book was released on 2022-02-14 with total page 434 pages. Available in PDF, EPUB and Kindle. Book excerpt: Defects in Two-Dimensional Materials addresses the fundamental physics and chemistry of defects in 2D materials and their effects on physical, electrical and optical properties. The book explores 2D materials such as graphene, hexagonal boron nitride (h-BN) and transition metal dichalcogenides (TMD). This knowledge will enable scientists and engineers to tune 2D materials properties to meet specific application requirements. The book reviews the techniques to characterize 2D material defects and compares the defects present in the various 2D materials (e.g. graphene, h-BN, TMDs, phosphorene, silicene, etc.). As two-dimensional materials research and development is a fast-growing field that could lead to many industrial applications, the primary objective of this book is to review, discuss and present opportunities in controlling defects in these materials to improve device performance in general or use the defects in a controlled way for novel applications. Presents the theory, physics and chemistry of 2D materials Catalogues defects of 2D materials and their impacts on materials properties and performance Reviews methods to characterize, control and engineer defects in 2D materials