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Steiner, Mathias: Control of molecular Spontaneous Emission in an optical lambda/2-microresonator. 2006
Inhalt
Contents
1 Introduction
1.1 Aim of this thesis
1.2 Scope of this thesis
1.3 Instrumentation
2 A New Microresonator Design for Single Molecule Detection
2.1 Introduction
2.2 Preparation and Characterization of the Resonator Mirrors
2.3 Preparation and Characterization of the Microresonator
2.4 Single Molecule Detection in the λ/2-Regime
2.5 Microresonator-Controlled Single Molecule Fluorescence Spectra
2.6 Summary and Conclusion
3 Microresonator-Controlled Spontaneous Emission Rates of Single Molecules
3.1 Introduction
3.2 Experimental
3.3 Microresonator-Controlled Spontaneous Emission Rate
3.4 Fluorescence Lifetime Imaging
3.5 Detection Efficiency for On- and Off-Axis Emission
3.6 Transverse Correlation Length and Intermolecular Distance
3.7 Summary and Conclusion
4 The Spectral Shape of Microresonator-Controlled Molecular Fluorescence
4.1 Introduction
4.2 Experimental
4.3 Output for Varying Mirror Spacing and Dopant Concentration
4.4 On-Axis Transmission versus Molecular Emission
4.5 Single Molecule Fluorescence Spectra for Varying Mirror Spacing
4.6 Summary and Conclusion
5 Spontaneous Emission Rate, Output and Stimulated Emission Efficiency in a λ/2-Microresonator
5.1 Introduction
5.2 Experimental
5.3 Fluorescence Dynamics
5.4 Fluorescence Rate and Output Efficiency
5.5 The Coupling Ratio β
5.6 Output Fluctuations and Stimulated Emission Efficiency
5.7 Summary and Conclusion
6 Spatial Modes of a λ/2-Microresonator
6.1 Introduction
6.2 Experimental
6.3 Radiation Patterns for Representative Mirror Spacings
6.4 Shape and Intensity Fluctuations of Isolated Spatial Modes
6.5 Formation and Decay of a Spatial Double Mode
6.6 Summary and Conclusion
7 Vibronic Coupling of Single Molecules to Photonic Modes of a λ/2-Microresonator
7.1 Introduction
7.2 Experimental
7.3 Vibronic Coupling and Single Molecule Fluorescence
7.4 Vibronic Coupling and Raman Scattering
7.5 Summary and Conclusion
8 Single Molecule Fourier Spectroscopy
8.1 Introduction
8.2 Experimental
8.3 Spectral Width and Temporal Coherence
8.4 Single Photon Two-Beam Interference
8.5 Zero-Phonon Line, Phonon Wing and the Debye-Waller factor
8.6 Single Molecule Fourier Transform Fluorescence Spectra
8.7 Beating induced by the Phonon Wing
8.8 Summary and Conclusion
References
A Acknowledgement
B Abstract
C Zusammenfassung