Kang L. Wang
Affiliations: | 1979- | Electrical Engineering | University of California, Los Angeles, Los Angeles, CA |
Area:
Nanoelectronics, spintronics and nanomagnetics, non-volatile electronics and low dissipation devices, quantum device and systems, frontier materials by molecular beam epitaxy, photonics and energyWebsite:
https://cegn.kacst.edu.sa/team/kang-wang.htmlGoogle:
"Kang Lung Wang" OR "Kang L Wang"Bio:
https://www.ee.ucla.edu/kang-wang/
https://scholar.google.com/citations?user=5AUqCHcAAAAJ&hl=en
Wang, Kang Lung Electron impact ionization cross sections for carbon vapor. Massachusetts Institute of Technology. Dept. of Electrical Engineering. Thesis. 1970. Ph.D.
Parents
Sign in to add mentorCharles Kimball Crawford | grad student | 1970 | MIT | |
(Electron impact ionization cross sections for carbon vapor) |
Children
Sign in to add traineeGang Qiu | grad student | ||
Laurence P. Sadwick | grad student | 1989 | UCLA |
Gaolong Jin | grad student | 2000 | UCLA |
Yuhao Luo | grad student | 2001 | UCLA |
Shujun Cai | grad student | 2003 | UCLA |
Filipp A. Baron | grad student | 2006 | UCLA |
Roman P. Ostroumov | grad student | 2007 | UCLA |
Dong H. Cha | grad student | 2008 | UCLA |
Mei Xue | grad student | 2009 | UCLA |
Augustin J. Hong | grad student | 2010 | UCLA |
Chi-Hau Sue | grad student | 2011 | UCLA |
Boris Vulovic | grad student | 2011 | UCLA |
Emil B. Song | grad student | 2012 | UCLA |
Minsheng Wang | grad student | 2013 | UCLA |
Juan G. Alzate Vinasco | grad student | 2014 | UCLA |
Siguang Ma | grad student | 2014 | UCLA |
Jianshi Tang | grad student | 2014 | UCLA |
Caifu Zeng | grad student | 2014 | UCLA |
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Publications
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Qiu G, Yang HY, Hu L, et al. (2023) Emergent ferromagnetism with superconductivity in Fe(Te,Se) van der Waals Josephson junctions. Nature Communications. 14: 6691 |
Qiu G, Yang HY, Chong SK, et al. (2023) Manipulating Topological Phases in Magnetic Topological Insulators. Nanomaterials (Basel, Switzerland). 13 |
Zhang P, Balakrishnan PP, Eckberg C, et al. (2023) Exchange-Biased Quantum Anomalous Hall Effect. Advanced Materials (Deerfield Beach, Fla.). e2300391 |
Tai L, Dai B, Li J, et al. (2022) Distinguishing the Two-Component Anomalous Hall Effect from the Topological Hall Effect. Acs Nano |
Deng P, Eckberg C, Zhang P, et al. (2022) Probing the mesoscopic size limit of quantum anomalous Hall insulators. Nature Communications. 13: 4246 |
Qiu G, Zhang P, Deng P, et al. (2022) Mesoscopic Transport of Quantum Anomalous Hall Effect in the Submicron Size Regime. Physical Review Letters. 128: 217704 |
Qi L, Hu H, Wang Y, et al. (2022) New insights into the central sympathetic hyperactivity post-myocardial infarction: Roles of METTL3-mediated m A methylation. Journal of Cellular and Molecular Medicine |
Yang CY, Pan L, Grutter AJ, et al. (2020) Termination switching of antiferromagnetic proximity effect in topological insulator. Science Advances. 6: eaaz8463 |
Wu Y, Zhang S, Zhang J, et al. (2020) Néel-type skyrmion in WTe/FeGeTe van der Waals heterostructure. Nature Communications. 11: 3860 |
Zhao L, Wang Z, Zhang X, et al. (2020) Topology-Dependent Brownian Gyromotion of a Single Skyrmion. Physical Review Letters. 125: 027206 |