Draft:Eslam Khalaf
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Comment: Probably too soon. Academics usually come through on the basis of "presumed notability", the criteria is here: WP:NACADEMIC. I am not seeing anything here which matches the critera, only one of which is needed. Criteria 2 is generally attributed at Nobel Prize levels of notability. With an h-index of 32 (but I can see rising a lot recently), this seems a few years WP:TOOSOON. ChrysGalley (talk) 09:47, 8 April 2026 (UTC)
Eslam Khalaf | |
|---|---|
| Born | |
| Education | German University in Cairo (B.Sc.) University of Stuttgart (M.Sc.) Ph.D. (Stuttgart/Max Planck Institute for Solid State Research) |
| Awards | Otto Hahn Medal (2017 cohort) |
| Scientific career | |
| Fields | Condensed matter physics Theoretical physics |
| Institutions | Harvard University |
| Website | sites |
Eslam Khalaf is an Egyptian condensed matter theorist and an assistant professor of physics at Harvard University.[2][3] His research focuses on theoretical problems in quantum materials, including topology, disorder/localisation, and correlated phases in moiré systems and graphene-based heterostructures.[3]
Early life and education
[edit]Khalaf studied engineering at the German University in Cairo, graduating with a B.Sc. in Electronics (2010).[4] He later earned an M.Sc. in Physics from the University of Stuttgart (2012).[4]
He completed doctoral research in Stuttgart in 2017 in the Max Planck Institute for Solid State Research, with work focused on topology and localisation in quantum materials.[2][4]
Career
[edit]After completing his Ph.D., Khalaf held postdoctoral positions associated with Harvard and the Max Planck system, and he was a postdoctoral fellow at Harvard working in the group of Ashvin Vishwanath from 2018 to 2022.[5]
He became an assistant professor at the University of Texas at Austin in 2022, and returned to Harvard as an assistant professor in 2023.[2][3]
Research
[edit]Khalaf’s research is in condensed matter theory, often motivated by experiments in moiré materials and other quantum materials platforms.[3]
His publications include work on symmetry-protected and higher-order topological phases,[6] the theory of magic-angle conditions in twisted graphene multilayers,[7] and theory connecting topological textures to superconductivity in magic-angle graphene.[8]
His work has also appeared in collaborations on correlated phases in moiré graphene systems, including a Nature paper on tunable spin-polarized correlated states in twisted double bilayer graphene[9] and a Nature paper reporting fractional Chern insulators in magic-angle twisted bilayer graphene.[10]
Awards and honours
[edit]- Otto Hahn Medal (for doctoral research on disorder effects and transport in topological quantum wires).
References
[edit]- ↑ "Khalaf Group". Harvard University. Retrieved 6 April 2026.
- 1 2 3 "Seminar By Eslam Khalaf, Harvard University". National High Magnetic Field Laboratory. 22 March 2024. Retrieved 6 April 2026.
- 1 2 3 4 "Khalaf Group". Harvard University. Retrieved 6 April 2026.
- 1 2 3 "Eslam Khalaf wins Otto Hahn Medal". Egypt Independent. 21 June 2018. Retrieved 6 April 2026.
- ↑ "Scientists use trilayer graphene configuration to observe more robust superconductivity". Harvard Gazette. 8 February 2021. Retrieved 6 April 2026.
- ↑ Khalaf, Eslam (2018). "Higher-order topological insulators and superconductors protected by inversion symmetry". Physical Review B. 97 (20) 205136. arXiv:1801.10050. Bibcode:2018PhRvB..97t5136K. doi:10.1103/PhysRevB.97.205136.
- ↑ Khalaf, Eslam; Kruchkov, Alex J.; Tarnopolsky, Grigory; Vishwanath, Ashvin (2019). "Magic angle hierarchy in twisted graphene multilayers". Physical Review B. 100 (8) 085109. arXiv:1901.10485. Bibcode:2019PhRvB.100h5109K. doi:10.1103/PhysRevB.100.085109.
- ↑ Khalaf, Eslam; Chatterjee, Shubhayu; Bultinck, Nick; Zaletel, Michael P.; Vishwanath, Ashvin (2021). "Charged skyrmions and topological origin of superconductivity in magic-angle graphene". Science Advances. 7 (19) eabf5299. arXiv:2004.00638. Bibcode:2021SciA....7.5299K. doi:10.1126/sciadv.abf5299. PMC 8099185. PMID 33952523.
- ↑ Liu, Xiaomeng; Hao, Zeyu; Khalaf, Eslam (2020). "Tunable spin-polarized correlated states in twisted double bilayer graphene". Nature. 583 (7815): 221–225. arXiv:1903.08130. Bibcode:2020Natur.583..221L. doi:10.1038/s41586-020-2458-7. PMID 32641816.
- ↑ Xie, Yonglong; Pierce, Andrew T.; Park, Jeong Min; Parker, Daniel E.; Khalaf, Eslam (2021). "Fractional Chern insulators in magic-angle twisted bilayer graphene". Nature. 600 (7889): 439–443. arXiv:2107.10854. Bibcode:2021Natur.600..439X. doi:10.1038/s41586-021-04002-3. PMC 8674130. PMID 34912084.

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