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Two-dimensional (2D) materials have attracted tremendous interest since the study of graphene in the early 21st century. With their thickness in the angstrom-to-nanometer range, 2D materials, including graphene, transition metal dichalcogenides, phosphorene, silicene, and other inorganic and organic materials, can be an ideal platform to study fundamental many-body interactions because of reduced screening and can also be further engineered for nanophotonic applications. This book compiles research outcomes of leading groups in the field of 2D materials for nanophotonic physics and devices. It describes research advances of 2D materials for various nanophotonic applications, including ultrafast lasers, atomically thin optical lenses, and gratings to inelastically manipulate light propagation, their integrations with photonic nanostructures, and light–matter interactions. The book focuses on actual applications, while digging into the physics underneath. It targets advanced undergraduate- and graduate-level students of nanotechnology and researchers in nanotechnology, physics, and chemistry, especially those with an interest in 2D materials.
This is a digital product.
Additional ISBNs
9789814800228, 9780429428777, 9814800228, 0429428774
Two-Dimensional Materials in Nanophotonics: Developments, Devices, and Applications 1st Edition is written by Yuerui Lu and published by Jenny Stanford Publishing. The Digital and eTextbook ISBNs for Two-Dimensional Materials in Nanophotonics are 9780429767999, 0429767994 and the print ISBNs are 9789814800228, 9814800228. Additional ISBNs for this eTextbook include 9789814800228, 9780429428777, 9814800228, 0429428774.
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