A device that is able to produce single photons is a fundamental building block for a number of quantum technologies. Significant progress has been made in engineering quantum emission in the solid state, for instance, using semiconductor quantum dots as well as defect sites in bulk and two-dimensional materials. Here we report the discovery of a room-temperature quantum emitter embedded deep within the band gap of aluminum nitride. Using spectral, polarization, and photon-counting time-resolved measurements we demonstrate bright ($>10^5$ counts per second), pure ($g^{(2)}(0) < 0.2$), and polarized room-temperature quantum light emission from color centers in this commercially important semiconductor
© 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...
Room-temperature quantum emitters in gallium nitride (GaN) are reported. The emitters originate from...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A system that is able to produce single photons is a fundamental building block for many quantum te...
A system that is able to produce single photons is a fundamental building block for many quantum te...
A system that is able to produce single photons is a fundamental building block for many quantum te...
The integration of solid-state single-photon sources with foundry-compatible photonic platforms is c...
Doctor of PhilosophyDepartment of PhysicsJingyu LinTime-resolved deep ultraviolet (DUV) Photolumines...
We present an overview on the growth and the optical properties of GaN quantum dots (QDs) embedded i...
Doctor of PhilosophyDepartment of PhysicsJingyu LinTime-resolved deep ultraviolet (DUV) Photolumines...
© 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...
Room-temperature quantum emitters in gallium nitride (GaN) are reported. The emitters originate from...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A device that is able to produce single photons is a 5 fundamental building block for a number of qu...
A system that is able to produce single photons is a fundamental building block for many quantum te...
A system that is able to produce single photons is a fundamental building block for many quantum te...
A system that is able to produce single photons is a fundamental building block for many quantum te...
The integration of solid-state single-photon sources with foundry-compatible photonic platforms is c...
Doctor of PhilosophyDepartment of PhysicsJingyu LinTime-resolved deep ultraviolet (DUV) Photolumines...
We present an overview on the growth and the optical properties of GaN quantum dots (QDs) embedded i...
Doctor of PhilosophyDepartment of PhysicsJingyu LinTime-resolved deep ultraviolet (DUV) Photolumines...
© 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...
Room-temperature quantum emitters in gallium nitride (GaN) are reported. The emitters originate from...