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Valleytronics based on 2D materials is a brand-new field which is considered as the heart of next-generation semiconductor technology. Valleytronics focuses on the generation and detection of valley-polarized currents, as well as the design and fabrication of optical devices, which achieve circularly polarized light absorption and electroluminescence. This book aims to give an overview of the recent theoretical and experimental developments achieved in valleytronics based on various 2D materials. After some experimental progress at room temperature in manipulating the valley degree of freedom,…mehr

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Produktbeschreibung
Valleytronics based on 2D materials is a brand-new field which is considered as the heart of next-generation semiconductor technology. Valleytronics focuses on the generation and detection of valley-polarized currents, as well as the design and fabrication of optical devices, which achieve circularly polarized light absorption and electroluminescence. This book aims to give an overview of the recent theoretical and experimental developments achieved in valleytronics based on various 2D materials. After some experimental progress at room temperature in manipulating the valley degree of freedom, valleytronics is considered superior to spintronics in the semiconductor industry. The book provides a useful reference for the growing community of researchers in the field of valleytronics, 2D materials and semiconductors. It will ignite the readers' interest in valleytronics and push the field forward.

Key Features:

. The first complete monograph on the newly-emerging field valleytronics. . Contains up-to-date developments in theory and experiment. . Detailed book encompassing various fields in physics to induce valley polarization. . Provides a suitable reference for researchers in the still-developing field of valleytronics. . Describes the major challenges people faces to realize the practical application of the valley degree of freedom


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Autorenporträt
Dr Sake Wang earned his PhD in physics at Southeast University, China, in 2016. Since 2021, he has been an Associate Professor at the Jinling Institute of Technology, China. He was a Visiting Scientist at Tohoku University, Japan, from 2019 to 2021. His current interests focus on theoretical studies of spin and valley transport, as well as valley-optoelectronic devices in two-dimensional materials. He has published 73 papers with more than 4,000 citations. Four of his first-authored and corresponding-authored papers are in the top 1% of ESI highly cited papers. In addition, he has served as an Associate Editor of the Journal of Superconductivity and Novel Magnetism (Springer Publishing) since 2020.

Dr Hongyu Tian has been an associate professor at Linyi University, China, since 2023. He completed his PhD in physics at Southeast University, China, in 2013. His research interests mainly focus on the electronic transport properties of two-dimensional systems, including spin and valley-related transport properties, as well as the transport properties of polycrystalline systems. He has published over 50 papers and is PI of the National Natural Science Foundation of China and the Natural Science Foundation of Shandong Province (China).