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Single-Molecule Metal-Induced Energy Transfer: From Basics to Applications: Springer Theses

Autor Narain Karedla
en Limba Engleză Hardback – 27 iul 2017
This thesis presents a novel single-molecule spectroscopy method that, for the first time, allows the dipole orientations and fluorescence lifetimes of individual molecules to be measured simultaneously. These two parameters are needed to determine the position of individual molecules with nanometer accuracy near a metallic structure. Proof-of-principle experiments demonstrating the value of this new single-molecule localization concept are also presented. Lastly, the book highlights potential applications of the method in biophysics, molecular physics, soft matter and structural biology.
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Specificații

ISBN-13: 9783319605364
ISBN-10: 3319605364
Pagini: 166
Ilustrații: XVIII, 166 p. 96 illus., 34 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.44 kg
Ediția:1st ed. 2017
Editura: Springer International Publishing
Colecția Springer
Seria Springer Theses

Locul publicării:Cham, Switzerland

Cuprins

Introduction.- Theory.- Single-Molecule Metal-Induced Energy Transfer (smMIET).- Single-Molecule Transition Dipole Imaging.- Discussion and Outlook.- Conclusions.

Notă biografică

Narain Karedla is an experimental physicist at the Third Institute of Physics-Biophysics at Göttingen University, Germany. Narain defended his doctoral research on 'Single-molecule Metal Induced Energy Transfer (smMIET): From Basics to Applications' in June 2016 with the highest distinction (summa cum laude). His current scientific interests include developing single-molecule spectroscopy and superresolution techniques for  biophysical applications. He holds an integrated Master of Science degree in Chemistry from the Indian Institute of Technology, Roorkee.

Textul de pe ultima copertă

This thesis presents a novel single-molecule spectroscopy method that, for the first time, allows the dipole orientations and fluorescence lifetimes of individual molecules to be measured simultaneously. These two parameters are needed to determine the position of individual molecules with nanometer accuracy near a metallic structure. Proof-of-principle experiments demonstrating the value of this new single-molecule localization concept are also presented. Lastly, the book highlights potential applications of the method in biophysics, molecular physics, soft matter and structural biology.

Caracteristici

Nominated as an outstanding PhD thesis by Göttingen University, Germany Introduces the electrodynamics of a dipole emitter from fundamentals with illustrations Includes descriptions of the optical setups used, together with possible modifications/combinations that will be especially useful for experimental physicists Features discussion/comments on the practical aspects of the method, highlighting its potential applications in biophysics, structural biology, and molecular physics Includes supplementary material: sn.pub/extras