南昌大学物理与材料学院
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王同标 教授 博导

个人简介:

王同标,男,1982年出生,山东兖州人,教授,博士,博士生导师。2010年6月毕业于中山大学光学工程专业,2010年7月进入南昌大学物理系工作,2011年12月至2013年12月在清华大学从事博士后研究。目前主要从事纳米光子学与微纳米力学方面的研究,以第一作者或通讯作者发表SCI论文30余篇。所指导的研究生中有多人获“研究生国家奖学金”、“江西省优秀硕士论文”。主持国家自然科学基金3项、江西省杰出青年基金1项、江西省自然科学基金2项。获江西省自然科学一等奖1项(排名第3),江西省教学成果一等奖1项(排名第3)。

电子邮箱:tbwang@ncu.edu.cn

主持的科研项目:

1. 国家自然科学基金地区项目,纳米体系中多界面Casimir摩擦的研究,12164027,主持,2022-2025,38万,在研。

2. 江西省杰出青年基金,摩尔双曲等离激元对转动粒子Casimir 效应的调控研究,20224ACB211002,主持,2023-2026,20万,在研。

3. 国家自然科学基金青年项目,表面等离激元耦合对量子摩擦的调控研究,11704175,主持,2018-2020,24万,结题。

4. 国家自然科学基金地区项目,等离子体 Airy 光束的调控及其动力学行为研究,11264027,主持,2013-2016,50万,结题。

5. 江西省自然科学基金,基于石墨烯材料的量子摩擦的调控,20151BAB202017,主持,2015-2017,5万,结题。

6. 江西省自然科学基金,表面等离子体与金属纳米结构的相互作用研究,20114BAB212005,主持,2011-2013,1.5万,结题。

近年来发表的部分论文:

1. Tong-Biao Wang, Ying Zhou, Hong-Qian Mu, Khurram Shehzad, De-Jian Zhang, Wen-Xing Liu, Tian-Bao Yu, and Qing-Hua Liao, “Enhancement of lateral Casimir force on a rotating particle near hyperbolic metamaterial,” Nanotechnology 33, 245001 (2022).

2. Ting Yu, Rong Luo, Tong-Biao Wang*, De-Jian Zhang, Wen-Xing Liu, Tian-Bao Yu, and Qing-Hua Liao, “Enhancement of Casimir Friction Between Graphene-Covered Topological Insulator,” Nanomaterials 12, 1148 (2022).

3. Hong-Qian Mu, Tong-Biao Wang*, De-Jian Zhang, Wen-Xing Liu, Tian-Bao Yu, and Qing-Hua Liao, “Mechanical modulation of spontaneous emission of nearby nanostructured black phosphorus,” Opt. Express 29, 1037-1047 (2021).

4. Gao-Feng Ju, Tong-Biao Wang*, De-Jian Zhang, Wen-Xing Liu, Tian-Bao Yu, and Qing-Hua Liao, “Cooling scheme of black phosphorus-based structures via near-field radiative heat transfer,” J Quant. Spectrosc. Radiat. Transf. 263, 107543 (2021).

5. Rong Luo, Jian-Rong Yang, Tong-Biao Wang*, De-Jian Zhang, Wen-Xing Liu, Tian-Bao Yu, and Qing-Hua Liao, “Enhancement of Casimir friction between graphene-covered hyperbolic materials,” Phys. Lett. A 387, 127006 (2021).

6. Li-Mei Ye, Hua-Nan Liang, Tong-Biao Wang*, De-Jian Zhang, Wen-Xing Liu, Tian-Bao Yu, and Qing-Hua Liao, “Modulation of spontaneous emission near graphene/hBN multilayers,” J. Opt. Soc. Am. B 37, 3888-3895 (2020).

7. Li-Mei Ye, Xiao-Jie Yi, Tong-Biao Wang*, Yong Zhao, Tian-Bao Yu, Qing-Hua Liao, and Nian-Hua Liu, “Enhancement and modulation of spontaneous emission near graphene-based hyperbolic metamaterials,” Materials Research Express 6, 125803 (2019).

8. Liang-Ying Zhong, Qi-Mei Zhao, Tong-Biao Wang*, Tian-Bao Yu, Qing-Hua Liao, and Nian-Hua Liu, “Near-field radiative heat transfer between graphene/SiC multilayers,” J. Heat Transfer 140, 072701 (2018).

9. Xiao-Juan Hong, Jian-Wen Li, Tong-Biao Wang*, De-Jian Zhang, Wen-Xing Liu, Qing-Hua Liao, Tian-Bao Yu, and Nian-Hua Liu, “Near-field radiative heat transfer between graphene-covered hyperbolic metamaterials,” Jpn. J. Appl. Phys. 57, 045001 (2018).

10. Jian-Wen Li, Tong-Biao Wang*, Nian-Hua Liu*, and Tianbao Yu, “Dependence of the sliding distance of a one-dimensional atom chain on initial velocity,” Scientific Reports 7, 16290 (2017).

11. Qing-Hua Liao, Chen-Cai Song, Tong-Biao Wang*, De-Jian Zhang, Wen-Xing Liu, Tian-Bao Yu, and Nian-Hua Liu, “Modulation of the electromagnetic local density of states in graphene-based hyperbolic metamaterials,” J. Appl. Phys. 122, 193101(2017).

12. Ting Zhou, Tong-Biao Wang*, Qing-Hua Liao, Jiang-Tao Liu, Tian-Bao Yu, and Nian-Hua Liu, “Electromagnetic local density of states in graphene-covered porous silicon carbide,” Phys. Lett. A 381, 1976-1980 (2017).

13. Qimei Zhao, Ting Zhou, Tongbiao Wang*, Wenxing Liu, Jiangtao Liu, Tianbao Yu, Qinghua Liao, and Nianhua Liu, “Active control of near-field radiative heat transfer between graphene-covered metamaterials,” J. Phy. D: Appl. Phys. 50, 145101 (2017).

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