代表性论文 [1] 1. Xu, H., Lei, J., Li, D., Li, Y., Tao, W., Zhang, W., & Chen, M. (2024). Influence of the Injection Bias on the Capacitive Sensing of the Test Mass Motion of Satellite Gravity Gradiometers. Sensors, 24(4), 1188. [2] 2. Xu, H., Li, D., Lei, J., Tao, W., & Li, Y. (2023, April). Research on high-resolution displacement detection technology in space. In 2023 24th International Vacuum Electronics Conference (IVEC) (pp. 1-2). IEEE. [3] 3. Wang, Y., Xu, H., Chang, S., Wen, T., Zhuang, J., Zhang, H., ... & Li, D. (2024). A compact matchbox-sized dust detector for lunar surface applications. Acta Astronautica, 223, 540-549. [4] 4. Zhou, C., Xu, H., Wu, K., Wang, Z., Wang, H., & Cao, S. (2024). Lithium tantalate film prepared by RF magnetron sputtering and effect of thickness on performance of inorganic electrochromic devices. Ceramics International. |
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