孫亭亭

孫亭亭

孫亭亭,女,博士,副教授,現任職於鄭州大學。

基本介紹

  • 中文名:孫亭亭
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:粒子物理與原子核物理
  • 任職院校:鄭州大學
人物經歷,教育經歷,工作經歷,研究方向,學術成果,科研項目,代表性論文,

人物經歷

教育經歷

1.2009.9-2015.1,北京大學,物理學院,博士,導師:孟傑教授。
2.2005.9-2009.6,西南大學,物理科學與技術學院,學士。

工作經歷

1.2016.1-至今,鄭州大學,物理工程學院,校聘副教授,碩士生導師
2.2015.10-2016.4,日本理化學研究所,仁科中心,特別研究員
3.2015.5-2015. 12,鄭州大學,物理工程學院,講師

研究方向

1.奇特原子核的結構性質,包括:連續譜效應、單粒子共振態、形變暈等;
2.超核的研究,包括:重子重子相互作用、超核結構等;
3.中子星、核物質;
4.協變密度泛函理論,格林函式方法等。

學術成果

科研項目

1.國家自然科學基金青年項目,11505157,格林函式協變密度泛函理論對單粒子共振態的研究,2016.1-2018.12,21萬元,在研,主持。

代表性論文

1.W.-L. Lu, andT.-T. Sun, Spin and pseudospin symmetries in Lambda hypernuclei, Accepted by Nucl. Phys. Rev. (2019).
2.Z.-X. Liu, C.-J. Xia, andT.-T. Sun*, Relativistic mean-field approach for Lambda, Xi, and Sigma hypernuclei, Accepted by Nucl. Phys. Rev. (2019).
3.T.-T. Sun, S.-S. Zhang, Q.-L. Zhang, and C.-J. Xia*, Strangeness and Delta resonance in compact stars with relativistic-mean-field models, Phys. Rev. D 99, 023004 (2019)
4.C.-J. Xia*, G.-X. Peng*,T.-T. Sun*, W.-L. Guo*, D.-H. Lu*, and P. Jaikumar*, Interface effects of strange quark matter with density dependent quark masses, Phys. Rev. D 98, 034031 (2018)
5.Z.-X. Liu, C.-J. Xia, W.-L. Lu, Y.-X. Li, J. N. Hu, andT.-T. Sun*, Relativistic mean-field approach for Lambda, Sigma, and Xi hypernuclei, Phys. Rev. C 98,024316 (2018)
6.T.-T. Sun, C.-J. Xia*, S.-S. Zhang, and M. S. Smith, Massive neutron stars and Lambda-hypernuclei in relativistic mean field models, Chin. Phys. C42, 025101 (2018).
7.T.-T. Sun*, W.-L. Lu, and S.-S. Zhang, Spin and pseudospin symmetries in the single-Lambda spectrum, Phys. Rev. C 96, 044312(2017).
8.W.-L. Lu, Z.-X. Liu, S.-H. Ren, W. Zhang, andT.-T. Sun*, (Pseudo)spin symmetry in the single-neutron spectrum of Lambda hypernuclei, J. Phys. G: Nucl. Part. Phys., 44, 125104 (2017).
9.S.-H. Ren,T.-T. Sun*, and W. Zhang, Green's function relativistic mean field theory for Lambda hypernuclei, Phys. Rev. C, 95, 054318 (2017).
10.M. Shi, X.-X. Shi, Z.-M. Niu,T.-T. Sun, and J.-Y. Guo*, Relativistic extension of the complex scaled Green's function method for resonances in deformed nuclei, Eur. Phys. J. A 53, 40 (2017).
11.T.-T. Sun, E. Hiyama*, H. Sagawa, H.-J. Schulze, and J. Meng, Mean field approaches for Xi^- hypernuclei and current experimental data, Phys. Rev. C, 94, 064319(2016).
12.T.-T. Sun, Z.-M. Niu, and S. Q. Zhang*, Single-proton resonant state and the isospin dependence investigated by the Green's function relativistic mean field theory, J. Phys. G: Nucl. Part. Phys. 43,045107 (2016).
13.孫亭亭*,格林函式協變密度泛函理論及其套用,中國科學:物理學力學天文學,46,012006(2016).
14.T.-T. Sun, S. Q. Zhang, Y. Zhang, J. N. Hu, and J. Meng*, Green's function method for single-particle resonant states in relativistic mean field theory, Phys. Rev. C 90,054321(2014).
15.T.-T. Sun, B. Y. Sun, and J. Meng*, BCS-BEC crossover in nuclear matter with the relativistic Hartree-Bogoliubov theory, Phys. Rev. C 86,014305(2012).
16.T.-T. Sun*, S.-H. Ren, and Z. P. Li*, Green's function method for the single-particle resonances in a deformed Dirac equation. arXiv.1710.02923.
17.T.-T. Sun, M. Matsuo, Y. Zhang, and J. Meng*, Odd-even staggering of neutron radii for neutron-rich Mg isotopes in continuum Skyrme-Hartree-Bogoliubov theory, arXiv.1310.1661.

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