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2 produkter
2 produkter
3 191 kr
Skickas inom 11-20 vardagar
The most comprehensive, authoritative and widely cited reference on photovoltaic solar energyFully revised and updated, the Handbook of Photovoltaic Science and Engineering, Second Edition incorporates the substantial technological advances and research developments in photovoltaics since its previous release. All topics relating to the photovoltaic (PV) industry are discussed with contributions by distinguished international experts in the field.Significant new coverage includes: three completely new chapters and six chapters with new authorsdevice structures, processing, and manufacturing options for the three major thin film PV technologieshigh performance approaches for multijunction, concentrator, and space applicationsnew types of organic polymer and dye-sensitized solar cellseconomic analysis of various policy options to stimulate PV growth including effect of public and private investmentDetailed treatment covers: scientific basis of the photovoltaic effect and solar cell operationthe production of solar silicon and of silicon-based solar cells and moduleshow choice of semiconductor materials and their production influence costs and performancemaking measurements on solar cells and modules and how to relate results under standardised test conditions to real outdoor performancephotovoltaic system installation and operation of components such as inverters and batteries.architectural applications of building-integrated PVEach chapter is structured to be partially accessible to beginners while providing detailed information of the physics and technology for experts. Encompassing a review of past work and the fundamentals in solar electric science, this is a leading reference and invaluable resource for all practitioners, consultants, researchers and students in the PV industry.
Photon Absorption Models in Nanostructured Semiconductor Solar Cells and Devices
Häftad, Engelska, 2015
534 kr
Skickas inom 10-15 vardagar
This book is intended to be used by materials and device physicists and also solar cells researchers. It models the performance characteristics of nanostructured solar cells and resolves the dynamics of transitions between several levels of these devices. An outstanding insight into the physical behaviour of these devices is provided, which complements experimental work. This therefore allows a better understanding of the results, enabling the development of new experiments and optimization of new devices. It is intended to be accessible to researchers, but also to provide engineering tools which are often only accessible to quantum physicists.Photon Absorption Models in Nanostructured Semiconductor Solar Cells and Devices is intended to provide an easy-to-handle means to calculate the light absorption in nanostructures, the final goal being the ability to model operational behaviour of nanostructured solar cells. It allows researchers to design new experiments and improve solar cell performances, and offers a means for the easy approximate calculation of the energy spectrum and photon absorption coefficients of nanostructures. This calculation is based on the effective mass model and uses a new Hamiltonian called the Empirical kp Hamiltonian, which is based on a four band kp model.