Quantum dots (QDs) based on III-nitride semi-conductors are promising for single photon emission at noncryogenic temperatures due to their large exciton binding energies. Here, we demonstrate GaN QD single photon emitters operating at 300 K with g((2)) (0) = 0.17 +/- 0.08. At this temperature, single photon emission rates up to 10 6 s(-1) are reached, while g((2)) (0) <= 0.5 is maintained. Our results are achieved for GaN QDs embedded in a planar AlN layer grown on silicon, representing a promising pathway for future interlinkage with optical waveguides and cavities. These samples allow exploring the limiting factors to key performance metrics for single photon sources, such as brightness and single photon purity. While high brightness is a...
We demonstrate single-photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
We have fabricated GaN quantum dots (QDs) in AlN confined layer structures by molecular beam epitaxy...
Polarisation-controlled single-photon sources are at the heart of quantum information applications,...
We present an overview on the growth and the optical properties of GaN quantum dots (QDs) embedded i...
Quantum dots (QDs) are the result of quantum confinement in the three spatial directions, as such th...
We report the single photon emission properties of III-nitride quantum dots (QDs) fabricated by elec...
We present a microphotoluminescence study of single GaN/AlN quantum dots embedded in single nanowire...
© 2017 American Chemical Society. Group III-nitride materials have drawn a great deal of renewed int...
We demonstrate triggered single photon emission at room temperature from a site-controlled III-nitri...
GaN/InGaN heterostructures were grown by molecular beam epitaxy on sapphire (0001). The photolumines...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
Electrons and holes in the QD can occupy only a given set of states with discrete energy levels, suc...
Group III-nitride materials have drawn a great deal of renewed interest due to their versatile chara...
We demonstrate single-photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
We have fabricated GaN quantum dots (QDs) in AlN confined layer structures by molecular beam epitaxy...
Polarisation-controlled single-photon sources are at the heart of quantum information applications,...
We present an overview on the growth and the optical properties of GaN quantum dots (QDs) embedded i...
Quantum dots (QDs) are the result of quantum confinement in the three spatial directions, as such th...
We report the single photon emission properties of III-nitride quantum dots (QDs) fabricated by elec...
We present a microphotoluminescence study of single GaN/AlN quantum dots embedded in single nanowire...
© 2017 American Chemical Society. Group III-nitride materials have drawn a great deal of renewed int...
We demonstrate triggered single photon emission at room temperature from a site-controlled III-nitri...
GaN/InGaN heterostructures were grown by molecular beam epitaxy on sapphire (0001). The photolumines...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
Electrons and holes in the QD can occupy only a given set of states with discrete energy levels, suc...
Group III-nitride materials have drawn a great deal of renewed interest due to their versatile chara...
We demonstrate single-photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
We have fabricated GaN quantum dots (QDs) in AlN confined layer structures by molecular beam epitaxy...
Polarisation-controlled single-photon sources are at the heart of quantum information applications,...