Bachelor thesis quantum dots
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Quantum dots QDs are semiconductor particles a few nanometres in size, having optical and electronic properties that differ from larger particles due to quantum mechanics. They are a central topic in nanotechnology. When the quantum dots are illuminated by UV light, an electron in the quantum dot can be excited to a state of higher energy. In the case of a semiconducting quantum dot, this process corresponds to the transition of an electron from the valence band to the conductance band.
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Quantum dot infrared photodetector thesis writing
PhD theses – Quantum- and Nanoelectronics
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Taking Quantum Dots for a Spin
N2 - A quantum computer requires a quantum-mechanical two-level system with coherent control over its eigenstates. We investigate two different routes leading to quantum computational devices using Ge-Si core-shell nanowires in which holes are confined in one dimension: Normal-state quantum dots for spin qubits and proximity-induced su-perconductivity for Majorana fermions. The nanowires have an extremely low defect density resulting in high mobilities and the ability to form intentional quantum dots of several lengths up to half a micron. The predicted strong direct-Rashba spin-orbit coupling allows the hole spin state to be controlled using electric-dipole spin-resonance and is at the same time a requirementfor obtaining Majorana zero modes.
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