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Quantum measurement and orientation tracking of fluorescent nanodiamonds inside living cells

  • L. P. McGuinness
  • , Y. Yan
  • , A. Stacey
  • , D. A. Simpson
  • , L. T. Hall
  • , D. Maclaurin
  • , S. Prawer
  • , P. Mulvaney
  • , J. Wrachtrup
  • , F. Caruso
  • , R. E. Scholten
  • , L. C.L. Hollenberg

Research output: Contribution to journalArticlepeer-review

Abstract

Fluorescent particles are routinely used to probe biological processes 1. The quantum properties of single spins within fluorescent particles have been explored in the field of nanoscale magnetometry 2-8, but not yet in biological environments. Here, we demonstrate optically detected magnetic resonance of individual fluorescent nanodiamond nitrogen-vacancy centres inside living human HeLa cells, and measure their location, orientation, spin levels and spin coherence times with nanoscale precision. Quantum coherence was measured through Rabi and spin-echo sequences over long (>10 h) periods, and orientation was tracked with effective 1° angular precision over acquisition times of 89 ms. The quantum spin levels served as fingerprints, allowing individual centres with identical fluorescence to be identified and tracked simultaneously. Furthermore, monitoring decoherence rates in response to changes in the local environment may provide new information about intracellular processes. The experiments reported here demonstrate the viability of controlled single spin probes for nanomagnetometry in biological systems, opening up a host of new possibilities for quantum-based imaging in the life sciences.

Original languageEnglish (US)
Pages (from-to)358-363
Number of pages6
JournalNature Nanotechnology
Volume6
Issue number6
DOIs
StatePublished - Jun 2011
Externally publishedYes

All Science Journal Classification (ASJC) codes

  • Bioengineering
  • Atomic and Molecular Physics, and Optics
  • Biomedical Engineering
  • General Materials Science
  • Condensed Matter Physics
  • Electrical and Electronic Engineering

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