Yuta Ochiai, Vu Xuan Tung Duong, Zilong Zhang, 等. Dynamic Bending Stress Sensing Using NV Centers in a Single-Crystal Diamond MEMS Cantilever[J]. Functional Diamond, 2026,6(1).
Yuta Ochiai, Vu Xuan Tung Duong, Zilong Zhang, et al. Dynamic Bending Stress Sensing Using NV Centers in a Single-Crystal Diamond MEMS Cantilever[J]. Functional Diamond, 2026, 6(1).
Yuta Ochiai, Vu Xuan Tung Duong, Zilong Zhang, 等. Dynamic Bending Stress Sensing Using NV Centers in a Single-Crystal Diamond MEMS Cantilever[J]. Functional Diamond, 2026,6(1).DOI: 10.1080/26941112.2026.2721758.
Yuta Ochiai, Vu Xuan Tung Duong, Zilong Zhang, et al. Dynamic Bending Stress Sensing Using NV Centers in a Single-Crystal Diamond MEMS Cantilever[J]. Functional Diamond, 2026, 6(1).DOI: 10.1080/26941112.2026.2721758.
Dynamic Bending Stress Sensing Using NV Centers in a Single-Crystal Diamond MEMS Cantilever
摘要
Abstract
In this study
a single-crystal diamond (SCD) MEMS cantilever was fabricated using a buried graphite sacrificial-layer process. A region containing nitrogen-vacancy (NV) centers formed near the ion-implantation-induced defective layer was directly utilized as the stress-sensing region of the released cantilever
enabling dynamic stress sensing without the use of externally attached nanodiamonds. We investigated the relationship between the stress induced by the cantilever vibration and the peak shift of the fluorescence intensity of the optically detected magnetic resonance (ODMR) spectrum. By approximately aligning the static magnetic field with one of the four NV-center crystallographic axes
we were able to evaluate the dependence of the peak shift on stress. Our findings revealed that the peak shift can effectively detect uniaxial stress due to normal vibration. In addition
as the vibration amplitude increased
the magnitude of the ODMR peak shift also increased
showing a trend consistent with previously reported NV-center stress responses. Furthermore
the ODMR shift exhibited periodic modulation corresponding to the cantilever’s vibration phase. These results indicate that NV centers in micromachined SCD cantilevers can be used to detect vibration-induced dynamic bending stress.
关键词
Keywords
references
The trial reading is over, you can activate your VIP account to continue reading.