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OverviewThis book addresses important advances in diverse quantization phenomena. Theory of Magnetoelectric Properties of 2D Systems develops the generalized tight-binding model in order to comprehend the rich quantization phenomena in 2D materials. The unusual effects, taken into consideration simultaneously, mainly come from the multi-orbital hybridization, the spin-orbital coupling, the intralayer and interlayer atomic interactions, the layer number, the stacking configuration, the site-energy difference, the magnetic field, and the electric field. The origins of the phenomena are discussed in depth, particularly focusing on graphene, tinene, phosphorene and MoS2, with a broader model also drawn. This model could be further used to investigate electronic properties of 1D and 3D condensed-matter systems, and this book will prove to be a valuable resource to researchers and graduate students working in 2D materials science. Full Product DetailsAuthor: Ming-Fa Lin (National Cheng Kung University) , Dr Szu-Chao Chen (National Cheng Kung University) , Dr Jhao-Ying Wu (National Cheng Kung University) , Chiun-Yan Lin (National Cheng Kung University, Taiwan)Publisher: Institute of Physics Publishing Imprint: Institute of Physics Publishing Dimensions: Width: 17.80cm , Height: 0.80cm , Length: 25.40cm Weight: 0.428kg ISBN: 9780750316729ISBN 10: 0750316721 Pages: 118 Publication Date: 11 December 2017 Audience: Professional and scholarly , Professional & Vocational Format: Hardback Publisher's Status: Active Availability: In Print ![]() This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us. Table of ContentsReviewsAuthor InformationMing-Fa Lin, Szu-Chao Chen, Jhao-Ying Wu and Chiun-Yan Lin are all based at the National Cheng Kung University in Taiwan where they collaborate in theoretical solid state physics research and in particular properties of 2D materials. Tab Content 6Author Website:Countries AvailableAll regions |