Quantum dots are attractive due to their potential technological applications and the opportunity they provide for study of fundamental physics in the mesoscopic scale. This dissertation studies optically controlled spins in quantum dots in connection to quantum information processing. The physical realization of the quantum bit (qubit) consists of the two spin states of an extra electron confined in a quantum dot. Spin rotations are performed optically, by use of an intermediate charged exciton (trion) state. The two spin states and the trion form a $\Lambda$-type system. The merits of this system for quantum information processing include integrability into a solid-state device, long spin coherence time, and fast and focused optical contr...
Coherent manipulation of quantum bits (qubits) on time scales much shorter than the coherence time 1...
Spins confined in quantum dots are a leading candidate for solid-state quantum bits that can be cohe...
The focus of the thesis is nonlinear transient optical properties and coherent control of single int...
A single spin confined to a semiconductor quantum dot is a system of significant interest for quantu...
In this work, we study the resonant nonlinear optical response obtained when optical fields are used...
Self-assembled quantum dots can act as an interface between single spins and photons. They combine t...
Coherent optically driven semiconductor quantum dot systems are proposed for the implementation of q...
We demonstrate that the quantum dot-confined dark exciton forms a long-lived integer spin solid-stat...
Semiconductor quantum dots are objects with dimensions of a few to a few tens of nanometers. Confine...
We present a procedure for the optical coherent control of quantum bits within a quantum dot spin-ex...
An electron spin confined to a self-assembled quantum dot presents itself as a natural candidate for...
Single spins confined in semiconductor quantum dots - artificial atoms in the solid-state - are att...
An electron spin confined to a self-assembled semiconductor quantum dot is a candidate system to act...
Coherent control of ensembles of light emitters by means of multi-wave mixing processes is key for t...
Single electron spin in a semiconductor quantum dot (QD) and single photon wavepacket propagating in...
Coherent manipulation of quantum bits (qubits) on time scales much shorter than the coherence time 1...
Spins confined in quantum dots are a leading candidate for solid-state quantum bits that can be cohe...
The focus of the thesis is nonlinear transient optical properties and coherent control of single int...
A single spin confined to a semiconductor quantum dot is a system of significant interest for quantu...
In this work, we study the resonant nonlinear optical response obtained when optical fields are used...
Self-assembled quantum dots can act as an interface between single spins and photons. They combine t...
Coherent optically driven semiconductor quantum dot systems are proposed for the implementation of q...
We demonstrate that the quantum dot-confined dark exciton forms a long-lived integer spin solid-stat...
Semiconductor quantum dots are objects with dimensions of a few to a few tens of nanometers. Confine...
We present a procedure for the optical coherent control of quantum bits within a quantum dot spin-ex...
An electron spin confined to a self-assembled quantum dot presents itself as a natural candidate for...
Single spins confined in semiconductor quantum dots - artificial atoms in the solid-state - are att...
An electron spin confined to a self-assembled semiconductor quantum dot is a candidate system to act...
Coherent control of ensembles of light emitters by means of multi-wave mixing processes is key for t...
Single electron spin in a semiconductor quantum dot (QD) and single photon wavepacket propagating in...
Coherent manipulation of quantum bits (qubits) on time scales much shorter than the coherence time 1...
Spins confined in quantum dots are a leading candidate for solid-state quantum bits that can be cohe...
The focus of the thesis is nonlinear transient optical properties and coherent control of single int...