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Nonobjective Colloidal quantum dots (QDs) exhibit noteworthy size-tunable optical properties including broad absorbance and bright, marginal emission. This thesis presents efforts to utilize, manipulate, and expand these properties.Author: Jennifer Marie SchererPublish Year: 2016
Table of contents
- Quantum dots thesis in 2021
- Quantum dot
- Types of quantum dots
- Quantum dots for display applications
- How quantum dots work
- What are quantum dots
- Quantum dots thesis 07
- Quantum dots thesis 08
Quantum dots thesis in 2021
Quantum dot
Types of quantum dots
Quantum dots for display applications
How quantum dots work
What are quantum dots
Quantum dots thesis 07
Quantum dots thesis 08
How are TMD monolayers used to create photons?
As the second contribution of this thesis, we demonstrate that TMD monolayers placed within a cavity can help us create photons which avoid each other as if they interact. The effect can be simply understood as the TMD monolayer acting as a filter for photons, such that it only allows the passage of one photon at a time.
Which is the Holy Grail of quantum optics?
The first part of this thesis is concerned with one of the holy grails of quantum optics: an efficient transfer of energy (coupling) between single photons and matter degrees of freedom. From a certain point of view, the problem of efficient coupling is purely geometrical.
How are qubits used in quantum photonics research?
QDs, also known as artificial atoms, allow for confining charge carriers in all three dimensions, and are potentially useful in quantum technology as single photon sources and as hosts of spin qubits. In the first part of the thesis, we mainly focus on the optical investigation of spin qubits in QDs.
How are quantum dots used in optical applications?
For example, ultra small ZnO NPs, better known as ZnO Quantum Dots (QDs), have an increasing band gap with decreasing particle size due to quantum confinement. However, there are still many challenges to overcome before ZnO NPs and QDs are used in optical applications.
Last Update: Oct 2021