Ultrafast Quantum Effects and Vibrational Dynamics in Organic and Biological Systems

Nonfiction, Science & Nature, Science, Physics, Spectrum Analysis, Biological Sciences, Biophysics
Cover of the book Ultrafast Quantum Effects and Vibrational Dynamics in Organic and Biological Systems by Sarah Elizabeth Morgan, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Sarah Elizabeth Morgan ISBN: 9783319633992
Publisher: Springer International Publishing Publication: August 1, 2017
Imprint: Springer Language: English
Author: Sarah Elizabeth Morgan
ISBN: 9783319633992
Publisher: Springer International Publishing
Publication: August 1, 2017
Imprint: Springer
Language: English

This thesis focuses on theoretical analysis of the sophisticated ultrafast optical experiments that probe the crucial first few picoseconds of quantum light harvesting, making an important contribution to quantum biology, an exciting new field at the intersection of condensed matter, physical chemistry and biology. 

It provides new insights into the role of vibrational dynamics during singlet fission of organic pentacene thin films, and targeting the importance of vibrational dynamics in the design of nanoscale organic light harvesting devices, it also develops a new wavelet analysis technique to probe vibronic dynamics in time-resolved nonlinear optical experiments. Lastly, the thesis explores the theory of how non-linear “breather” vibrations are excited and propagate in the disordered nanostructures of photosynthetic proteins. 

 

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This thesis focuses on theoretical analysis of the sophisticated ultrafast optical experiments that probe the crucial first few picoseconds of quantum light harvesting, making an important contribution to quantum biology, an exciting new field at the intersection of condensed matter, physical chemistry and biology. 

It provides new insights into the role of vibrational dynamics during singlet fission of organic pentacene thin films, and targeting the importance of vibrational dynamics in the design of nanoscale organic light harvesting devices, it also develops a new wavelet analysis technique to probe vibronic dynamics in time-resolved nonlinear optical experiments. Lastly, the thesis explores the theory of how non-linear “breather” vibrations are excited and propagate in the disordered nanostructures of photosynthetic proteins. 

 

More books from Springer International Publishing

Cover of the book The Auditory System at the Cocktail Party by Sarah Elizabeth Morgan
Cover of the book The Biosphere and Civilization: In the Throes of a Global Crisis by Sarah Elizabeth Morgan
Cover of the book Sustainability and the Humanities by Sarah Elizabeth Morgan
Cover of the book Cybernetics and Algorithms in Intelligent Systems by Sarah Elizabeth Morgan
Cover of the book Drying and Wetting of Building Materials and Components by Sarah Elizabeth Morgan
Cover of the book Pioneers in Plastic Surgery by Sarah Elizabeth Morgan
Cover of the book The Hippocampus from Cells to Systems by Sarah Elizabeth Morgan
Cover of the book Challenges to Democratic Governance in Developing Countries by Sarah Elizabeth Morgan
Cover of the book Linguistic and Psycholinguistic Approaches on Implicatures and Presuppositions by Sarah Elizabeth Morgan
Cover of the book Rivers of the Ganga-Brahmaputra-Meghna Delta by Sarah Elizabeth Morgan
Cover of the book Persuasive Technology by Sarah Elizabeth Morgan
Cover of the book Chemistry and Technology of Honey Production by Sarah Elizabeth Morgan
Cover of the book Sustainable Development Research at Universities in the United Kingdom by Sarah Elizabeth Morgan
Cover of the book Platonic Legislations by Sarah Elizabeth Morgan
Cover of the book The Politics of International Political Theory by Sarah Elizabeth Morgan
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy