activity
20182021
most citedZero-field magnetometry using hyperfine-biased nitrogen-vacancy centers near diamond surfaces

2 citations · 2 across the 3 of their papers we have counts for

collaborators

5 papers

physics.bio-ph2021

Measurement of single-cell elasticity by nanodiamond-sensing of non-local deformation

Yue Cui, Weng-Hang Leong, Chu-Feng Liu +5

Nano-indentation based on, e.g., atomic force microscopy (AFM), can measure single cell elasticity with high spatial resolution and sensitivity, but relating the data to cell mecha…

cond-mat.mes-hall20212 cited

Zero-field magnetometry using hyperfine-biased nitrogen-vacancy centers near diamond surfaces

Ning Wang, Chu-Feng Liu, Jing-Wei Fan +7

Shallow nitrogen-vacancy (NV) centers in diamond are promising for nano-magnetometry for they can be placed proximate to targets. To study the intrinsic magnetic properties, zero-f…

quant-ph2019

Ultra-sensitive hybrid diamond nanothermometer

Chu-Feng Liu, Weng-Hang Leong, Kangwei Xia +6

Nitrogen-vacancy (NV) centers in diamond are promising quantum sensors for their long spin coherence time under ambient conditions. However, their spin resonances are relatively in…

cond-mat.mes-hall2019

Nanometer-precision non-local deformation reconstruction using nanodiamond orientation sensing

Kangwei Xia, Chu-Feng Liu, Weng-Hang Leong +5

Information of material deformation upon loading is critical to evaluate mechanical properties of materials in general, and key to understand fundamental mechano-stimuli induced re…

quant-ph2018

Quantum coherence control at near 1000 K

Gang-Qin Liu, Xi Feng, Ning Wang +2

Quantum coherence control usually requires extremely low temperature environments. Even for spins in diamond, a remarkable exception, the coherence signal is lost as temperature ap…