Transcription of Yuan Cao – Curriculum Vitae
1 YuanCaoCurriculum VitaeH+1 (617) 749 Junior Fellow,Harvard University, Cambridge, 2021 Postdoctoral fellow,Massachusetts Institute of Technology, Cambridge, 2020Ph. D. in Electrical Engineering,Massachusetts Institute of Technology, Cambridge, 2016M. S. in Electrical Engineering,Massachusetts Institute of Technology, Cambridge, : 5/52010 2014B. Sc in Physics,University of Science & Technology of China, Hefei, : and Honors{2022 APS Richard L. Greene Dissertation Award{2021 McMillan Award (Highest honor for young condensed-matter physicists){2020 Sackler Prize in Physics{2019 TIME 100 Next for rising stars shaping their industries and the future{2018 Nature s 10 Graphene wrangler , one of ten people who mattered in science in 2018{2018 Physics World Breakthrough of the Year Award winner{2018 Forbes 30 under 30 Asia{2014 Locher Fellowship{2013 Guo Moruo Scholarship (Highest honor for USTC undergrad students)}}}}}}}}}
2 Selected PublicationsI have published over 20 papers in top journals with over 11,000 total citations, including 9 inNature, 2 in Science, 3 in Nature Nanotechnology, 1 in Nature Materials, 3 in Physical ReviewLetters, 2 in Physical Review B, among others. Currently I have an h-index of 21 (GoogleScholar). Below are selected publications of Cao*, J. M. Park*, K. Watanabe, T. Taniguchi, P. Jarillo-Herrero,Pauli-limit violation andre-entrant superconductivity in moir , 526-531 (2021).J. M. Park*,Y. Cao*, K. Watanabe, T.
3 Taniguchi, P. Jarillo-Herrero,Flavor Hunds Couplingand Diffusivity in Magic-Angle Twisted Bilayer , 43-48 (2021).A. Rozen*, J. M. Park*, U. Zondiner*,Y. Cao*, D. Rodan-Legrain, T. Taniguchi, K. Watanabe,Y. Oreg, A. Stern, E. Berg, P. Jarillo-Herrero, S. Ilani,Entropic evidence for a Pomeranchukeffect in magic angle , 214-219 (2021).J. M. Park*,Y. Cao*, K. Watanabe, T. Taniguchi, P. Jarillo-Herrero,Tunable strongly coupledsuperconductivity in magic-angle twisted trilayer , 249-255 (2021).1/3Y. Cao, D. Rodan-Legrain, J.
4 M. Park, F. N. Yuan, K. Watanabe, T. Taniguchi, R. M. Fernan-des, L. Fu, P. Jarillo-Herrero,Nematicity and Competing Orders in Superconducting Magic-Angle , 264-271 (2021).D. Rodan-Legrain*,Y. Cao*, J. M. Park*, S. C. de la Barrera, M. T. Randeria, K. Watanabe,T. Taniguchi, P. Jarillo-Herrero,Highly Tunable Junctions and Nonlocal Josephson Effect inMagic Angle Graphene Tunneling Nanotechnology (2021).2020Y. Cao, D. Rodan-Legrain, O. Rubies-Bigorda, J. M. Park, K. Watanabe, T. Taniguchi, ,Tunable correlated states and spin-polarized phases in twisted , 215-220 (2020).
5 Y. Cao , D. Chowdhury , D. Rodan-Legrain, O. Rubies-Bigorda, K. Watanabe, T. Taniguchi,T. Senthil P. Jarillo-Herrero,Strange metal in magic-angle graphene with near Planckian Rev. , 076801 (2020).A. Uri , S. Grover ,Y. Cao , D. Rodan-Legrain, Y. Myasoedov, K. Watanabe, T. Taniguchi, , M. Koshino, P. Jarillo-Herrero, E. Zeldov,Mapping the twist-angle disorder and Landaulevels in magic-angle , 47-52 (2020).U. Zondiner , A. Rozen , D. Rodan-Legrain ,Y. Cao, R. Queiroz, T. Taniguchi, K. Watanabe,Y. Oreg, F. von Oppen, A.
6 Stern, E. Berg, P. Jarillo-Herrero, S. of phasetransitions and Dirac revivals in magic-angle , 203-208 (2020).2019S. L. Tomarken,Y. Cao, A. Demir, K. Watanabe, T. Taniguchi, P. Jarillo-Herrero, R. ,Electronic compressibility of magic-angle graphene superlattices. Phys. Rev. , 046601 (2019).Q. Ma, C. H. Lui, J. C. W. Song, Y. Lin, J. F. Kong,Y. Cao, T. H. Dinh,et. al. Giantintrinsic photoresponse in pristine Nanotechnology14, 145-150 (2019).2018Y. Cao, V. Fatemi, S. Fang, K. Watanabe, T. Taniguchi, E.
7 Kaxiras, P. Jarillo-Herrero,Uncon-ventional superconductivity in magic-angle graphene , 43-50 (2018).Y. Cao, V. Fatemi, A. Demir, S. Fang, S. L. Tomarken, J. Y. Luo, J. D. Sanchez-Yamagishi,K. Watanabe, T. Taniguchi, E. Kaxiras, R. C. Ashoori, P. Jarillo-Herrero,Correlated insulatorbehaviour at half-filling in magic-angle graphene , 80-84 (2018).V. Fatemi, S. Wu,Y. Cao, L. Bretheau, Q. D. Gibson, K. Watanabe, T. Taniguchi, R. J. Cava,P. Jarillo-Herrero,Electrically tunable low-density superconductivity in a monolayer topologicalinsulator.
8 Science362, 926-929 (2018).2017Y. Bie, G. Grosso, M. Heuck, M. M. Furchi,Y. Cao, J. Zheng,et. MoTe2-basedlight-emitting diode and photodetector for silicon photonic integrated Nan-otechnology12, 1124-1129 (2017).2016Y. Cao, J. Y. Luo, V. Fatemi, S. Fang, J. D. Sanchez-Yamagishi, K. Watanabe, T. Taniguchi,E. Kaxiras, P. Jarillo-Herrero,Superlattice-induced insulating states and valley-protected orbitsin twisted bilayer Rev. , 116804 (2016).2014Y. Cao, X. G. Li, D. L. Wang, X. D. Fan, X. B. Lu, Z. Y.
9 Zhang, C. G. Zeng, Z. Y. Zhang,Highly anisotropic hybridization, dispersion, damping, and propagation of quantum plasmonsin graphene Review B90, 245415 (2014).Yuan Cao, Z. J. of hexagonal pattern of ferrofluid in magnetic & Magnetic Materials355, 93-99 (2014).2/3 Research2014 2020 Physics of Moir Superlattices,Jarillo-Herrero group, MIT, study is mainly on electronic transport in twisted 2-dimensional structures that have a moir pattern. My research in twisted bilayer graphene has led to a published paper in Physical ReviewLetters in 2016 and two Nature papers in 2018, among others.
10 Our work in magic-angle twistedbilayer graphene has stimulated extensive interest from the entire condensed matter community, andopened a new field known as twistronics . Recently we found that beyond bilayer graphene, twistedtrilayer graphene at its respective magic angle hosts a number of even more exotic properties, such asa possible spin-triplet superconducting nano-SQUID on twisted graphene,Zeldov group, Weizmann Institute of Science, spent two months at Weizmann to participate the experiment on twisted bilayer graphene usingscanning SQUID-on-tip Twistronics and beyond,Yacoby group, Harvard University.