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  4. Electron Spin Resonance of Nitrogen-Vacancy Defects Embedded in Single Nanodiamonds in an ABEL Trap
 
research article

Electron Spin Resonance of Nitrogen-Vacancy Defects Embedded in Single Nanodiamonds in an ABEL Trap

Kayci, Metin  
•
Chang, Huan-Cheng
•
Radenovic, Aleksandra  
2014
Nano Letters

Room temperature optically detected magnetic resonance of a single quantum object with nanoscale position control is an outstanding challenge in many areas, particularly in the life sciences. We introduce a novel approach to control the nitrogen-vacancy (NV) centers hosted in a single fluorescent nanodiamond (FND) for which an anti-Brownian electrokinetic trap (ABEL) performs the position control and an integrated radiofrequency (RF) circuit provides enhanced magnetic flux density for ensemble spin-state control simultaneously. We demonstrate static magnetic field sensing in platforms compatible with ABEL trap. With the advances in the synthesis and functionalization of stable arbitrarily small FNDs, we foresee the use of our device for the trapping and manipulation of single molecular-sized FNDs in aqueous solution.

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Type
research article
DOI
10.1021/nl5023964
Web of Science ID

WOS:000341544500064

Author(s)
Kayci, Metin  
Chang, Huan-Cheng
Radenovic, Aleksandra  
Date Issued

2014

Publisher

Amer Chemical Soc

Published in
Nano Letters
Volume

14

Issue

9

Start page

5335

End page

5341

Subjects

Anti-Brownian electrokinetic trap (ABEL)

•

fluorescent nanodiamonds (FND)

•

nitrogen-vacancy

•

nanophotonics

•

electron spin resonance (ESR)

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LBEN  
Available on Infoscience
October 23, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/107696
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