The advancement of quantum optical science and technology with solid-state emitters such as nitrogen-vacancy (NV) centers in diamond critically relies on the coherence of the emitters' optical transitions. A widely employed strategy to create NV centers at precisely controlled locations is nitrogen ion implantation followed by a high-temperature annealing process. We report on experimental data directly correlating the NV center optical coherence to the origin of the nitrogen atom. These studies reveal low-strain, narrow-optical-linewidth (<500 MHz) NV centers formed from naturally occurring N14 atoms. In contrast, NV centers formed from implanted N15 atoms exhibit significantly broadened optical transitions (>1 GHz) and higher strain...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...
We report depth-resolved photoluminescence measurements of nitrogen-vacancy (NV-) centers formed alo...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...
The advancement of quantum optical science and technology with solid-state emitters such as nitrogen...
The negatively-charged nitrogen-vacancy (NV) center is the most studied optical center in diamond an...
The negatively-charged nitrogen-vacancy (NV) center is the most studied optical center in diamond an...
We report the observation of stable optical transitions in nitrogen-vacancy (NV) centers created by ...
ABSTRACT: We report the observation of stable optical transitions in nitrogen-vacancy (NV) centers c...
Nitrogen-vacancy (NV) in diamond possesses unique properties for the realization of novel quantum de...
Nitrogen-vacancy (NV) in diamond possesses unique properties for the realization of novel quantum de...
Nitrogen vacancy (NV) centers in diamond have distinct promise as solid-state qubits. This is becaus...
Quantum information applications place stringent demands on the development of platforms that can ho...
Negatively charged nitrogen-vacancy (NV-) centers in diamond produced by ion implantation often show...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...
We demonstrate a method to create nitrogen-vacancy (NV) centers in diamond using focused helium ion ...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...
We report depth-resolved photoluminescence measurements of nitrogen-vacancy (NV-) centers formed alo...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...
The advancement of quantum optical science and technology with solid-state emitters such as nitrogen...
The negatively-charged nitrogen-vacancy (NV) center is the most studied optical center in diamond an...
The negatively-charged nitrogen-vacancy (NV) center is the most studied optical center in diamond an...
We report the observation of stable optical transitions in nitrogen-vacancy (NV) centers created by ...
ABSTRACT: We report the observation of stable optical transitions in nitrogen-vacancy (NV) centers c...
Nitrogen-vacancy (NV) in diamond possesses unique properties for the realization of novel quantum de...
Nitrogen-vacancy (NV) in diamond possesses unique properties for the realization of novel quantum de...
Nitrogen vacancy (NV) centers in diamond have distinct promise as solid-state qubits. This is becaus...
Quantum information applications place stringent demands on the development of platforms that can ho...
Negatively charged nitrogen-vacancy (NV-) centers in diamond produced by ion implantation often show...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...
We demonstrate a method to create nitrogen-vacancy (NV) centers in diamond using focused helium ion ...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...
We report depth-resolved photoluminescence measurements of nitrogen-vacancy (NV-) centers formed alo...
We exposed nitrogen-implanted diamonds to beams of swift heavy ions (∼1 GeV, ∼4 MeV/u) and find that...