Quantum theory of plasmons in metallic nano-structures is explained,with attention to large damping,plasmon photovoltaic effect,and plasmon-polariton kinetics. Suitable for students and researchers in plasmonics,opto-electronics,and photonics. Format: Hardback Length: 320 pages Publication date: 03 September 2020 Publisher: Cambridge University Press Quantum theory of plasmons is a complex and fascinating field that has been gaining increasing attention in recent years. This step-by-step approach aims to make this theory accessible to readers without specialized training in theory, with examples and clear explanations throughout.The theory is focused on the Random Phase Approximation description of plasmons in metallic nano-structures, which was previously defined for bulk metal. It provides a fully analytical theory formulation that is suitable for further development and applications.One of the key aspects of the theory is the consideration of large damping of plasmons in nanostructures, including electron scattering and Lorentz friction losses. This is particularly important in understanding the behavior of plasmons in realistic materials, as these damping effects can significantly impact their properties and interactions.The theory also presents a quantum description of the plasmon photovoltaic effect, which is a significant phenomenon in photo-voltaics. It explains how plasmons can be excited and manipulated to generate electricity, and how this can be harnessed to create efficient solar cells and other renewable energy devices.In addition, the theory provides an in-depth analysis of plasmon-polariton kinetics in metallic nano-chains. This analysis involves the study of the interactions between plasmons and polaritons, which are excitations of the electron plasma in metals. It sheds light on the behavior of these excitations and their role in various physical phenomena, such as light-matter interactions and energy transfer.The theory is suitable for students in the field of plasmonics, opto-electronics, and photonics, as well as for researchers active in the field of photo-voltaics, opto-electronics, nano-plasmonics, and nano-photonics. It also provides valuable insights for researchers in soft plasmonics, with applications to electro-signalling in neurons.Overall, this step-by-step approach to quantum theory of plasmons offers a comprehensive and accessible introduction to this complex field. With its clear explanations, examples, and applications, it provides a valuable resource for students, researchers, and anyone interested in exploring the fascinating world of plasmons and their applications. Weight: 734g Dimension: 176 x 250 x 26 (mm) ISBN-13: 9781108478397