Harvesting Sunshine: From Photovoltaics to the Thermodynamics of Light
Autor Tom Markvarten Limba Engleză Hardback – 16 apr 2026
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Specificații
ISBN-13: 9780198909224
ISBN-10: 0198909225
Pagini: 208
Ilustrații: 101 colour and black & white figures
Dimensiuni: 193 x 252 x 15 mm
Greutate: 0.61 kg
Editura: OUP OXFORD
Colecția OUP Oxford
Locul publicării:Oxford, United Kingdom
ISBN-10: 0198909225
Pagini: 208
Ilustrații: 101 colour and black & white figures
Dimensiuni: 193 x 252 x 15 mm
Greutate: 0.61 kg
Editura: OUP OXFORD
Colecția OUP Oxford
Locul publicării:Oxford, United Kingdom
Recenzii
An up-to-date and novel look at solar photovoltaics, providing a convenient way into the subject.
Notă biografică
Tom Markvart is affiliated with the Centre for Advanced Photovoltaics at the Czech Technical University in Prague and is Emeritus Professor of Energy Conversion at the University of Southampton. His career spans over forty years of research and education in photovoltaics and includes work on radiation resistant solar cells, standalone and grid-connected systems, and fundamental concepts in photovoltaic conversion. Tom's current research focuses on future generation of solar cells and the thermodynamics of light.
Cuprins
- Part I - Introduction
- 1: Photovoltaic energy conversion: a first look
- Part II - Solar cell as an electronic power converter
- 2: Carriers, bands and junctions
- 3: Solar cell as a current generator
- 4: Semiconductor solar cells
- Part III - Solar cell as an absorber and emitter of light
- 5: Photons, in a different light
- 6: The radiative balance
- 7: The Shockley-Queisser limit
- Part IV - Solar cell as a heat engine
- 8: Heat, light and work
- 9: Thermodynamics of photovoltaic conversion
- Part V - Solar energy conversion in photosynthesis
- 10: Photon capture: light harvesting
- 11: Energy storage: redox reactions and proton pump
- Part VI - Epilogue: A challenge for the future
- 12: Converting the full solar spectrum
- Appendix A - Blackbody vs. AM1.5 spectrum
- Appendix B - The transport equations
- Appendix C - Reciprocity of generation and recombination
- Appendix D - Working with Gaussians
- Appendix E - Black body thermodynamics
- Appendix F - Photon thermodynamics, in more detail
- Appendix G - Useful integrals
- Appendix H - Hints on selected exercises