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portada Rich Quasiparticle Properties in Layered Graphene-Related Systems
Type
Physical Book
Language
Inglés
Pages
428
Format
Hardcover
Dimensions
22.9 x 15.2 x 2.4 cm
Weight
0.74 kg.
ISBN13
9789811277788

Rich Quasiparticle Properties in Layered Graphene-Related Systems

Ming-Fa Lin (Author) · Chiun-Yan Lin (Author) · Ching-Hong Ho (Author) · World Scientific Publishing Company · Hardcover

Rich Quasiparticle Properties in Layered Graphene-Related Systems - Lin, Ming-Fa ; Lin, Chiun-Yan ; Ho, Ching-Hong

Physical Book

£ 154.08

  • Condition: New
Origin: U.S.A. (Import costs included in the price)
It will be shipped from our warehouse between Wednesday, July 24 and Wednesday, July 31.
You will receive it anywhere in United Kingdom between 1 and 3 business days after shipment.

Synopsis "Rich Quasiparticle Properties in Layered Graphene-Related Systems"

This comprehensive book delves into the fascinating world of quasiparticle properties of graphene-related materials. The authors thoroughly explore the intricate effects of intrinsic and extrinsic interactions on the material's properties, while unifying the single-particle and many-particle properties through the development of a theoretical framework. The book covers a wide range of research topics, including long-range Coulomb interactions, dynamic charge density waves, Friedel oscillations and plasmon excitations, as well as optical reflection and transmission spectra of thin films. Also it highlights the crucial roles of inelastic Coulomb scattering and optical scattering in the quasiparticle properties of layered systems, and the impact of crystal symmetry, number of layers, and stacking configuration on their uniqueness. Furthermore, the authors explore the topological properties of quasiparticles, including 2D time-reversal-symmetry protected topological insulators with quantum spin Hall effect, and rhombohedral graphite with Dirac nodal lines. Meanwhile, the book examines the gate potential application for creating topological localized states and shows topological invariants of 2D Dirac fermions, and binary Z2 topological invariants under chiral symmetry. The calculated results are consistent with the present experimental observations, establishing it as a valuable resource for individuals interested in the quasiparticle properties of novel materials.

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