© 2016 American Chemical Society. Emission control of a quantum emitter made of semiconductor materials is of significance in various optical applications. Specifically, the realization of efficient quantum emitters is important because typical semiconductor quantum dots are associated with low extraction efficiency levels due to their high refractive index contrast. Here, we report bright and unidirectional emission from a site-controlled InGaN quantum dot formed on the apex of a silver-coated GaN nanopyramidal structure. We show that the majority of the extracted light from the quantum dot is guided toward the bottom of the pyramid with high directionality. We also demonstrate that nanopyramid structures can be detached from a substrate, ...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...
Gallium-nitride (GaN) and its related alloys are direct band gap semiconductors, with a wide variety...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...
© 2017 American Chemical Society. Group III-nitride materials have drawn a great deal of renewed int...
Group III-nitride materials have drawn a great deal of renewed interest due to their versatile chara...
InxGa1−xN quantum dots have been fabricated by the selective growth of GaN micropyramid arrays toppe...
InxGa1−xN quantum dots have been fabricated by the selective growth of GaN micropyramid arrays toppe...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
We demonstrate single-photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
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 demonstrate single photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...
We demonstrate single photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
Electrically driven quantum dot, wire, and well hybrid light-emitting diodes are demonstrated by usi...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...
Gallium-nitride (GaN) and its related alloys are direct band gap semiconductors, with a wide variety...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...
© 2017 American Chemical Society. Group III-nitride materials have drawn a great deal of renewed int...
Group III-nitride materials have drawn a great deal of renewed interest due to their versatile chara...
InxGa1−xN quantum dots have been fabricated by the selective growth of GaN micropyramid arrays toppe...
InxGa1−xN quantum dots have been fabricated by the selective growth of GaN micropyramid arrays toppe...
We report on excitonic single photon emission and biexcitonic photon bunching from an InGaN quantum ...
We demonstrate single-photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
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 demonstrate single photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...
We demonstrate single photon emission from self-assembled m-plane InGaN quantum dots (QDs) embedded ...
Electrically driven quantum dot, wire, and well hybrid light-emitting diodes are demonstrated by usi...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...
Gallium-nitride (GaN) and its related alloys are direct band gap semiconductors, with a wide variety...
InxGa1-xN/GaN quantum wells have been grown on the {1011} facets of dense arrays of self-assembled G...