Details
Originalsprache | Englisch |
---|---|
Aufsatznummer | 455202 |
Fachzeitschrift | NANOTECHNOLOGY |
Jahrgang | 27 |
Ausgabenummer | 45 |
Publikationsstatus | Veröffentlicht - 7 Okt. 2016 |
Extern publiziert | Ja |
Abstract
We report on the coupling of single nitrogen vacancy (NV) centers to ultrathin fiber-taper nanofibers by the manipulation of single diamond nanocrystals on the nanofibers under real-time observation of nanodiamond fluorescence. Spin-dependent fluorescence of the single NV centers is efficiently detected through the nanofiber. We show control of the spin sub-level structure of the electronic ground state using an external magnetic field and clearly observe a frequency fine tuning of mS = This observation demonstrates a possibility of realizing fiber-integrated quantum λ-systems, which can be used for various quantum information devices including push-pull quantum memory and quantum gates.
ASJC Scopus Sachgebiete
- Chemische Verfahrenstechnik (insg.)
- Bioengineering
- Chemie (insg.)
- Allgemeine Chemie
- Werkstoffwissenschaften (insg.)
- Allgemeine Materialwissenschaften
- Ingenieurwesen (insg.)
- Werkstoffmechanik
- Ingenieurwesen (insg.)
- Maschinenbau
- Ingenieurwesen (insg.)
- Elektrotechnik und Elektronik
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in: NANOTECHNOLOGY, Jahrgang 27, Nr. 45, 455202, 07.10.2016.
Publikation: Beitrag in Fachzeitschrift › Artikel › Forschung › Peer-Review
}
TY - JOUR
T1 - Manipulation of single nanodiamonds to ultrathin fiber-taper nanofibers and control of NV-spin states toward fiber-integrated λ-systems
AU - Fujiwara, Masazumi
AU - Yoshida, Kazuma
AU - Noda, Tetsuya
AU - Takashima, Hideaki
AU - Schell, Andreas W.
AU - Mizuochi, Norikazu
AU - Takeuchi, Shigeki
PY - 2016/10/7
Y1 - 2016/10/7
N2 - We report on the coupling of single nitrogen vacancy (NV) centers to ultrathin fiber-taper nanofibers by the manipulation of single diamond nanocrystals on the nanofibers under real-time observation of nanodiamond fluorescence. Spin-dependent fluorescence of the single NV centers is efficiently detected through the nanofiber. We show control of the spin sub-level structure of the electronic ground state using an external magnetic field and clearly observe a frequency fine tuning of mS = This observation demonstrates a possibility of realizing fiber-integrated quantum λ-systems, which can be used for various quantum information devices including push-pull quantum memory and quantum gates.
AB - We report on the coupling of single nitrogen vacancy (NV) centers to ultrathin fiber-taper nanofibers by the manipulation of single diamond nanocrystals on the nanofibers under real-time observation of nanodiamond fluorescence. Spin-dependent fluorescence of the single NV centers is efficiently detected through the nanofiber. We show control of the spin sub-level structure of the electronic ground state using an external magnetic field and clearly observe a frequency fine tuning of mS = This observation demonstrates a possibility of realizing fiber-integrated quantum λ-systems, which can be used for various quantum information devices including push-pull quantum memory and quantum gates.
KW - color defect centres
KW - fiber taper
KW - nanodiamond
KW - optical nanofibers
UR - http://www.scopus.com/inward/record.url?scp=84991660932&partnerID=8YFLogxK
U2 - 10.1088/0957-4484/27/45/455202
DO - 10.1088/0957-4484/27/45/455202
M3 - Article
AN - SCOPUS:84991660932
VL - 27
JO - NANOTECHNOLOGY
JF - NANOTECHNOLOGY
SN - 0957-4484
IS - 45
M1 - 455202
ER -