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Label-free phase change detection of lipid bilayers using nanoscale diamond magnetometry
arXiv
Authors: Hitoshi Ishiwata, Hiroshi C. Watanabe, Shinya Hanashima, Takayuki Iwasaki, Mutsuko Hatano
Year
2020
Paper ID
21959
Status
Preprint
Abstract Read
~2 min
Abstract Words
200
Citations
N/A
Abstract
The NV center in a diamond is a quantum sensor with exceptional quality for highly sensitive nanoscale analysis of NMR spectra and thermometry. In this study, we investigate nanoscale phase change detection of lipid bilayers utilizing ensemble-averaged nuclear spin detection from small volume (6 nm)3, which was determined by the depth of the NV center. Analysis of nanoscale NMR signal confirm thickness of lipid bilayer to be 6.2 nm pm 3.4 nm with proton density of 65 proton/nm3 verifying formation of lipid bilayer on top of diamond sample. Correlation spectroscopy from nanoscale volume reveals quantum oscillation at 3.06 MHz corresponding to the Larmor frequency of proton at an applied magnetic field of 71.8 mT. The result of the correlation spectroscopy was compared with the 2D molecular diffusion model constructed by Monte Carlo simulation combined with results from molecular dynamics simulation. There is a change in diffusion constant from 1.5 pm 0.25 nm2/μs to 3.0 pm 0.5 nm2/μs when the temperature changes from 26.5 circC to 36.0 circC. Our results demonstrate that simultaneous observation of changes in translational diffusion and temperature is possible in label-free measurements using nanoscale diamond magnetometry. Our method paves the way for label-free imaging of cell membranes for understanding its phase composition and dynamics.
Why This Paper Matters
- This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
- It adds a 2020 reference point for readers tracking recent quantum research.
- The NV center in a diamond is a quantum sensor with exceptional quality for highly sensitive nanoscale analysis of NMR spectra and thermometry.
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