activity
20242026
collaborators

5 papers

physics.optics2026

From Displacement to Angle: Diamond-Based 3D Rotation Sensing for High-Precision Cellular Force Measurement

Linjie Ma, Bicong Wang, Tai Nam Yip +3

Cellular traction forces are conventionally measured by tracking the displacement of beads or micropillars, an approach fundamentally limited by optical diffraction and the classic…

physics.bio-ph2026

Nanodiamond-Enabled Torsion Microscopy Uncovers Multidimensional Cell-Matrix Mechanical Interactions

Yong Hou, Lingzhi Wang, Zheng Hao +10

Traditional cellular force-sensing techniques, such as traction force microscopy (TFM), are predominantly limited to measuring linear tractions, overlooking and technically unable…

physics.optics2025

Wafer-scale integration of single nanodiamonds via electrostatic-trapping

Jixiang Jing, Yicheng Wang, Zhuoran Wang +9

Nanodiamonds (NDs) are key materials for building nanoscale quantum sensing, imaging and communication devices. Scalable configuration of single NDs on heterogeneous platforms, for…

physics.optics2024

A versatile method for nano-fabrication on diamond film: flexible diamond metasurfaces as a demonstration

Yicheng Wang, Jixiang Jing, Yumeng Luo +5

Diamond exhibits superb performance across a wide range of applications due to its enormous outstanding properties in electronic, photonic and quantum fields. Yet heterogeneous int…

physics.optics2024

A diamond heater-thermometer microsensor for measuring localized thermal conductivity: a case study in gelatin hydrogel

Linjie Ma, Jiahua Zhang, Zheng Hao +4

Understanding the microscopic thermal effects of the hydrogel is important for its application in diverse fields, including thermal-related studies in tissue engineering and therma…