姓名:龚雪君
办公地址:A302
邮箱:xuejun.gong@xju.edu.cn
研究方向:
·(含时)密度泛函微扰理论(Density Functional Perturbation Theory, DFPT)的发展与应用
·多组态波函数理论(Multi-Reference Wave Function Theory ,MR-WFT)计算与应用
·开源计算软件Quantum ESPRESSO, Thermo_pw和MOLCAS以及赝势库Pslibrary的开发与维护
个人简介:龚雪君,理学博士,研究领域为凝聚态理论与数值模拟,主要研究方向为发展和应用(含时)密度泛函微扰理论(Density Functional Perturbation Theory, DFPT)模拟固体中的动力学响应现象。是第一性原理开源计算软件QUANTUM Espresso、MOLCAS和Thermo_pw的长期开发者。对于软件的GPU并行化和高性能计算也有一定的经验。近年来作为第一和通讯作者在Nature Index期刊Physical Review B, Journal of Chemical Physics和Computer Physics Communications等上发表12篇SCI论文,总引用次数600余次(Google Scholar统计)。
教育背景:
意大利 国际高等研究院(SISSA)博士
比利时 鲁汶大学(KU Leuven) 硕士
中国科学技术大学 本科
科研项目:
获奖荣誉:
代表论文:*为通讯作者
[1]X. Gong* and A. Dal Corso, High-temperature and high-pressure thermoelasticity
of hcp metals from ab initio quasiharmonic free energy calculations: The beryllium
case, Phys. Rev. B 110, 094109 (2024).
[2]X. Gong* and A. Dal Corso, High-pressure and high-temperature thermoelasticity
of hcp osmium from ab initio quasiharmonic theory, Phys. Rev. B 112, 024103 (2025).
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[3]X. Gong* and A. Dal Corso, An alternative GPU acceleration for a pseudopotential
plane-waves density functional theory code with applications to metallic systems,
Comput. Phys. Commun. 308, 109439 (2025).
[4] F. Aquilante...X. Gong...et al., Modern quantum chemistry with [Open]Molcas, J. Chem. Phys.
152, 214117 (2020).
[5]X. Gong* and A. Dal Corso, High-pressure and high-temperature thermoelasticity
of tantalum: An ab initio study, J. Chem. Phys. 162, 12 (2025).
[6]X. Gong* and A. D. Corso, Pressure and temperature dependent ab-initio quasi-
harmonic thermoelastic properties of tungsten, J. Phys. Condens. Matter 36, 28 (2024).
[7]X. Gong* and A. Dal Corso, Ab initio quasi-harmonic thermoelasticity of
molybdenum at high temperature and pressure, J. Chem. Phys. 160, 24 (2024).