investigate the use of MOVPE-grown ordered nanostructures on non-planar substrates for quantum nano-photonics and quantum electrodynamics-based applications. The mastering of surface adatom fluxes on patterned GaAs substrates allows for forming nanostrucutres confining well-defined charge carrier states. An example given is the formation of quantum dot (QD) molecules tunneled-coupled by quantum wires (QWRs), in which both electron and hole states are hybridized. In addition, it is shown that the high degree of symmetry of QDs grown on patterned (111) B substrates makes them efficient entangled-photons emitters. Thanks to the optimal control over their position and emission wavelength, the fabricated nanostructures can be efficiently coupled...
We review the unique self-organizing growth mechanisms on planar and patterned high-index semiconduc...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
Quantum structures designed using nanowires as a basis are excellent candidates to achieve novel des...
AbstractThe greatest success in semiconductor lasers has been brought by the ability to artificially...
The unique self-organizing growth mechanisms on planar and patterned high-index substrates leading t...
Due to the advantages arising from low-dimensional electronic systems, considerable effort has been...
Semiconductor quantum wires (QWRs) and quantum dots (QDs) are nanoscale heterostructures, which form...
The use of semiconductor quantum dots (QDs) in photonic devices has become widespread in recent year...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
Comunicación presentada en el 3rd international Workshop Engineering of quantum emitter properties, ...
The coupling of a prescribed number of site-controlled pyramidal quantum dots (QDs) with photonic cr...
Quantum dots embedded within nanowires represent one of the most promising technologies for applicat...
Laterally close-packed quantum dots (QDs) called quantum dot molecules (QDMs) are grown by modified ...
Epitaxially grown semiconductor quantum dots (QDs) and quantum rings (QRs) have been demonstrated to...
During the past two decades, the development of micro- and nano-fabrication technologies has positi...
We review the unique self-organizing growth mechanisms on planar and patterned high-index semiconduc...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
Quantum structures designed using nanowires as a basis are excellent candidates to achieve novel des...
AbstractThe greatest success in semiconductor lasers has been brought by the ability to artificially...
The unique self-organizing growth mechanisms on planar and patterned high-index substrates leading t...
Due to the advantages arising from low-dimensional electronic systems, considerable effort has been...
Semiconductor quantum wires (QWRs) and quantum dots (QDs) are nanoscale heterostructures, which form...
The use of semiconductor quantum dots (QDs) in photonic devices has become widespread in recent year...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
Comunicación presentada en el 3rd international Workshop Engineering of quantum emitter properties, ...
The coupling of a prescribed number of site-controlled pyramidal quantum dots (QDs) with photonic cr...
Quantum dots embedded within nanowires represent one of the most promising technologies for applicat...
Laterally close-packed quantum dots (QDs) called quantum dot molecules (QDMs) are grown by modified ...
Epitaxially grown semiconductor quantum dots (QDs) and quantum rings (QRs) have been demonstrated to...
During the past two decades, the development of micro- and nano-fabrication technologies has positi...
We review the unique self-organizing growth mechanisms on planar and patterned high-index semiconduc...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
Quantum structures designed using nanowires as a basis are excellent candidates to achieve novel des...