| dc.contributor.advisor |
Zhang, Dai (Prof. Dr.) |
|
| dc.contributor.author |
Zhao, Yang |
|
| dc.date.accessioned |
2026-09-16T12:14:26Z |
|
| dc.date.available |
2026-09-16T12:14:26Z |
|
| dc.date.issued |
2028-06-30 |
|
| dc.identifier.uri |
http://hdl.handle.net/10900/183385 |
|
| dc.identifier.uri |
http://nbn-resolving.org/urn:nbn:de:bsz:21-dspace-1833857 |
de_DE |
| dc.identifier.uri |
http://dx.doi.org/10.15496/publikation-124699 |
|
| dc.description.abstract |
This dissertation presents a systematic nanoscale investigation of linear and
nonlinear optical properties in layered and nanostructured materials, with
particular emphasis on how local structural variations determine optical
responses under far-field and polarization-resolved excitation conditions. Twodimensional transition metal dichalcogenides (2D-TMDCs) are widely studied
due to their strong excitonic effects, symmetry-dependent nonlinear optical
responses, and promising applications in optoelectronic and valleytronic
devices. In addition, plasmonic nanostructures provide strong light confinement
and local electromagnetic field enhancement through localized surface
plasmon resonances, making them important platforms for nanoscale
photonics, sensing, and nonlinear optical enhancement. Therefore, these two
material systems are chosen as representative platforms to investigate
geometry-dependent optical responses. By combining confocal scanning
optical microscopy, ultrafast nonlinear spectroscopy, Raman spectroscopy and
back focal plane imaging, this work establishes direct correlations between
morphology, symmetry, dipole orientation, and optical emission behavior. |
en |
| dc.description.abstract |
Die Dissertation ist gesperrt bis zum 30. Juni 2028 ! |
de_DE |
| dc.language.iso |
en |
de_DE |
| dc.publisher |
Universität Tübingen |
de_DE |
| dc.rights |
ubt-podno |
de_DE |
| dc.rights.uri |
http://tobias-lib.uni-tuebingen.de/doku/lic_ohne_pod.php?la=de |
de_DE |
| dc.rights.uri |
http://tobias-lib.uni-tuebingen.de/doku/lic_ohne_pod.php?la=en |
en |
| dc.subject.ddc |
530 |
de_DE |
| dc.subject.ddc |
540 |
de_DE |
| dc.subject.other |
2D materials |
en |
| dc.subject.other |
Raman |
en |
| dc.subject.other |
Polarization |
en |
| dc.subject.other |
Higher-order laser modes |
en |
| dc.subject.other |
Back-focal plane |
en |
| dc.subject.other |
k-space imaging |
en |
| dc.subject.other |
Plasmonics |
en |
| dc.subject.other |
Two-dimensional transition metal dichalcogenides |
en |
| dc.subject.other |
Localized surface plasmon resonance |
en |
| dc.subject.other |
Fluorescence Lifetime |
en |
| dc.subject.other |
TCSPC |
en |
| dc.subject.other |
Second harmonic generation |
en |
| dc.subject.other |
Photoluminescence |
en |
| dc.subject.other |
Phasor-Plot Approach |
en |
| dc.subject.other |
Excitonic dynamics |
en |
| dc.subject.other |
Gold cone arrays |
en |
| dc.subject.other |
2PPL |
en |
| dc.subject.other |
Confocal microscopy |
en |
| dc.title |
Nanoscale Investigation on Linear and Nonlinear Optical Properties in Layered and Nanostructured Materials |
en |
| dc.type |
PhDThesis |
de_DE |
| dcterms.dateAccepted |
2026-07-20 |
|
| utue.publikation.fachbereich |
Chemie |
de_DE |
| utue.publikation.fakultaet |
7 Mathematisch-Naturwissenschaftliche Fakultät |
de_DE |
| utue.publikation.noppn |
yes |
de_DE |