研究领域

数学物理、弦理论

教育背景

2001/09-2005/06        学士           智利大学

2005/09-2007/06        硕士           智利大学

2007/09-2012/06        博士           加州大学圣巴巴拉分校

工作经历

2012/06-2015/09        博士后        东京大学科维宇宙物理与数学研究所

2015/09-2018/09        博士后        普林斯顿高等研究院

荣誉与奖励

2007年-2010年           富布赖特奖学金,富布赖特国际科技项目

2004年                       优秀学生, 智利大学

发表论文


[1] F. Barra, T. Gilbert and M. Romo Drift of particles in self-similar systems and its Liouvillian interpret-tation, Phys. Rev. E 73, 026211 (2006) [arXiv:nlin/0601042].

[2] R. Aros, M. Romo and N. Zamorano, Conformal gravity from AdS/CFT mechanism, Phys. Rev. D 75, 067501 (2007). [arXiv:hep-th/0612028].

[3] R. Aros, M. Romo and N. Zamorano, Compactification in first order gravity, J. Phys. Conf. Ser. 134, 012013 (2008) [arXiv:0705.1162 [hep-th]].

[4] R. Aros and M. Romo, Killing spinors on supersymmetric P-branes, arXiv:0707.4030 [hep-th].

[5] M. Hassaine and M. Romo, Local supersymmetric extensions of the Poincare´ and AdS invariant gravity, JHEP 0806, 018 (2008) [arXiv:0804.4805 [hep-th]].

[6] G. Comp`ere, S. Detournay and M. Romo, Supersymmetric G¨odel and warped black holes in string theory, Phys. Rev. D 78, 104030 (2008) [arXiv:0808.1912 [hep-th]].

[7] D. Berenstein and M. Romo, Aspects of ABJM orbifolds, Adv. Theor. Math. Phys. 14, 1717 (2010). [arXiv:0909.2856 [hep-th]].

[8] S. Detournay, D. Isra¨el, J. Lapan and M. Romo, String Theory on Warped AdS3 and Virasoro Resonances, JHEP 1101, 030 (2011). [arXiv:1007.2781 [hep-th]].

[9] M. Romo, Aspects of ABJM orbifolds with discrete torsion, JHEP 1109, 122 (2011) arXiv:1011.47339. M. Romo, Aspects of ABJM orbifolds with discrete torsion, JHEP 1109, 122 (2011) arXiv:1011.4733

[10] M. Romo and M. Tierz, The unitary Chern-Simons matrix model and two dimensional Yang-Mills theory with the Villain action, Phys. Rev. D 86, 045027 (2012) arXiv:1103.2421 [hep-th]

[11] D. Berenstein and M. Romo, Monopole operators, moduli spaces and dualities , JHEP 1203, 063 (2012) arXiv:1108.4013 [hep-th].

[12] S. Detournay, J. Lapan and M. Romo, SUSY Enhancements in (0, 4) Deformations of AdS3/CFT2, JHEP 1201, 006 (2012) arXiv:1109.4186 [hep-th].

[13] H. Jockers, V. Kumar, J. Lapan, D. Morrison and M. Romo, Nonabelian 2D Gauge Theories for Deter-minantal Calabi-Yau Varieties , JHEP 1211, 166 (2012) arXiv:1205.3192 [hep-th].

[14] H. Jockers, V. Kumar, J. Lapan, D. Morrison and M. Romo, Two-Sphere Partition Functions and romov-Witten Invariants, Commun. Math. Phys. 325, (2014) arXiv:1208.6244 [hep-th].

[15] K. Hori and M. Romo, Exact Results In Two-Dimensional (2, 2) Supersymmetric Gauge Theories With Boundary , arXiv:1308.2438 [hep-th].

[16] D. Gang, N. Kim, M. Romo and M. Yamazaki, Taming Supersymmetric Defects in 3d-3d Correspondence, J. Phys. A: Math. Theor. 49, (2016) arXiv:1510.03884 [hep-th].

[17] D. Gang, N. Kim, M. Romo and M. Yamazaki, Aspects of Defects in 3d-3d Correspondence , JHEP 1610, 062 (2016) arXiv:1510.05011 [hep-th].

[18] J. Knapp, M. Romo and E. Scheidegger, Hemisphere Partition Function and Analytic Continuation to the Conifold Point , Commun. Num. Theor. Phys. 11 (2017) arXiv:1602.01382 [hep-th].

[19] M. Romo, Cluster Partition Function and Invariants of 3-Manifolds, Proceedings of the workshop ”Non-abelian Gauged Linear Sigma Model and Geometric Representation Theory” at BICMR (Jun. 2015), to appear in a special issue of Chinese Annals of Mathematics, Series B. arXiv:1704.00933 [hep-th].

[20] D. Gang, M. Romo and M. Yamazaki, All-Order Volume Conjecture for Closed 3-Manifolds from Com-plex Chern-Simons Theory, arXiv:1704.00918 [hep-th].

[21] M. Romo, Cluster Partition Function and Invariants of 3-Manifolds, Chinese Annals of Mathematics, Series B. 38 (2017) arXiv:1704.00933 [hep-th].

[22] M. Bertolini and M. Romo, Aspects of (2,2) and (0,2) hybrid models , arXiv:1801.04100 [hep-th].