© 2017 Elsevier B.V. Optical properties of color centers in diamond have been the subject of intense research due to their promising applications in quantum photonics. In this work we study the optical properties of Xe related color centers implanted into nitrogen rich (type IIA) and an ultrapure, electronic grade diamond. The Xe defect has two zero phonon lines at ∼794 nm and 811 nm, which can be effectively excited using both green and red excitation, however, its emission in the nitrogen rich diamond is brighter. Near resonant excitation is performed at cryogenic temperatures and luminescence is probed under strong magnetic field. Our results are important towards the understanding of the Xe related defect and other near infrared color c...
The advancement of quantum optical science and technology with solid-state emitters such as nitrogen...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
The negatively-charged nitrogen-vacancy (NV) center is the most studied optical center in diamond an...
Optical properties of color centers in diamond have been the subject of intense research due to thei...
Optical properties of color centers in diamond have been the subject of intense research due to thei...
Quantum information applications place stringent demands on the development of platforms that can ho...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
Diamond is a promising platform for the development of technological applications in quantum optics ...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
We report a study of the E3 excited-state structure of single negatively charged nitrogen-vacancy (N...
The work presents the results of optical studies of Xe-related defect in diamond. This defect is one...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Diamond is a promising platform for the development of technological applications in quantum optics ...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
The advancement of quantum optical science and technology with solid-state emitters such as nitrogen...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
The negatively-charged nitrogen-vacancy (NV) center is the most studied optical center in diamond an...
Optical properties of color centers in diamond have been the subject of intense research due to thei...
Optical properties of color centers in diamond have been the subject of intense research due to thei...
Quantum information applications place stringent demands on the development of platforms that can ho...
Photonic technologies play key roles in twenty-first century technologies. In addition to their trad...
Diamond is a promising platform for the development of technological applications in quantum optics ...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
We report a study of the E3 excited-state structure of single negatively charged nitrogen-vacancy (N...
The work presents the results of optical studies of Xe-related defect in diamond. This defect is one...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Diamond is a promising platform for the development of technological applications in quantum optics ...
Colour centres in diamond are rapidly becoming one of the leading platforms for solid-state quantum ...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
The advancement of quantum optical science and technology with solid-state emitters such as nitrogen...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
The negatively-charged nitrogen-vacancy (NV) center is the most studied optical center in diamond an...