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// Workers AI · dad joke modeWho's Sayeef Salahuddin? A current affair.

From Wikipedia, the free encyclopedia
Sayeef Salahuddin
Born
Bangladesh
Education
Known forNegative capacitance in ferroelectric materials
Awards
Scientific career
Fields
Workplaces
Websitewww2.eecs.berkeley.edu/Faculty/Homepages/salahuddin.html

Sayeef Salahuddin is a Bangladeshi-American electrical engineer. He is the TSMC Distinguished Professor of Electrical Engineering and Computer Sciences at the University of California, Berkeley, and a faculty senior scientist in the Materials Sciences Division of Lawrence Berkeley National Laboratory.[1][2] His research concerns negative capacitance in ferroelectric materials and its use in low-power transistor and memory devices.[1] He is a fellow of the IEEE, the American Physical Society, and the American Association for the Advancement of Science.[3] He also co-founded the startup Sonera Magnetics, acquired by Apple Inc. in 2026.[4]

Early life and education

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Salahuddin received a B.Sc. in electrical and electronic engineering from the Bangladesh University of Engineering and Technology in 2003, and a PhD in electrical and computer engineering from Purdue University in 2007.[1] As a graduate student he co-authored, with Supriyo Datta, a 2008 paper proposing the use of negative capacitance in ferroelectric materials to amplify transistor gate voltage.[5]

Career

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Salahuddin joined the UC Berkeley faculty in 2008 and became the TSMC Distinguished Professor of Electrical Engineering and Computer Sciences.[1][2] He co-directs the Berkeley Device Modeling Center and the Berkeley Center for Negative Capacitance Transistors, and is an associate director of ASCENT, a DARPA/Semiconductor Research Corporation device-technology center.[6] He served on the editorial board of IEEE Electron Devices Letters (2013–2016) and later became its editor-in-chief.[6] In 2025 he was named to the inaugural technical advisory board of the U.S. National Semiconductor Technology Center, operated by Natcast under the CHIPS and Science Act.[7]

Sonera Magnetics

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In 2018, Salahuddin's graduate student Dominic Labanowski and co-founder Nishita Deka launched Sonera Magnetics, a Berkeley startup developing solid-state magnetic sensors aimed at making functional brain imaging (magnetoencephalography) cheaper and more portable than conventional superconducting-sensor systems, with applications also explored in muscle sensing.[8] The pair "teamed up with Labanowski's Ph.D. advisor, Sayeef Salahuddin ... to launch Sonera Magnetics in 2018."[8] In September 2026 it was reported that Apple Inc. had acquired the company in a deal that closed that May.[4]

Research

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Salahuddin's work centers on device physics for low-power electronic and spintronic devices, particularly negative capacitance in ferroelectric materials as a way to reduce transistor operating voltage below conventional thermodynamic limits.[1] His 2008 paper with Datta proposed the underlying mechanism;[5] later work with collaborators reported experimental evidence of negative capacitance in ferroelectric capacitors[9] and on scaling hafnium- and zirconium-oxide ferroelectric films for transistor and memory applications, including films only a few atomic layers thick.[10][11]

Awards and honors

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Selected publications

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  • Salahuddin, Sayeef; Datta, Supriyo (2008). "Use of Negative Capacitance to Provide Voltage Amplification for Low Power Nanoscale Devices". Nano Letters. 8 (2): 405–410. doi:10.1021/nl071804g.
  • Khan, Asif Islam; et al. (2015). "Negative capacitance in a ferroelectric capacitor". Nature Materials. 14 (2): 182–186. doi:10.1038/nmat4148.
  • Cheema, Suraj S.; et al. (2022). "Emergent ferroelectricity in subnanometer binary oxide films on silicon". Science. 376 (6593): 648–652. doi:10.1126/science.abm8642.

References

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  1. 1 2 3 4 5 "Sayeef Salahuddin: Faculty Home Page". UC Berkeley Electrical Engineering and Computer Sciences. Retrieved 2026-09-11.
  2. 1 2 3 "Sayeef Salahuddin". Lawrence Berkeley National Laboratory. Retrieved 2026-09-11.
  3. 1 2 "EECS Professor Sayeef Salahuddin and alumnus Kevin Kornegay elected lifetime fellows of the American Association for the Advancement of Science". UC Berkeley EECS. Retrieved 2026-09-11.
  4. 1 2 Gallagher, William (2026-09-08). "Apple acquires brain imaging firm for health and accessibility features". AppleInsider. Retrieved 2026-09-11.
  5. 1 2 Salahuddin, Sayeef; Datta, Supriyo (2008). "Use of Negative Capacitance to Provide Voltage Amplification for Low Power Nanoscale Devices". Nano Letters. 8 (2): 405–410. doi:10.1021/nl071804g. PMID 18052402.
  6. 1 2 "Sayeef Salahuddin". Berkeley Emerging Technologies Research Center. Retrieved 2026-09-11.
  7. "Sayeef Salahuddin becomes technical adviser of US National Semiconductor Technology Center". The Business Standard. 2025-05-10. Retrieved 2026-09-11.
  8. 1 2 Patel, Prachi (2020-12-09). "Startup's New Type of Magnetic Sensor Could Make High-Performance Brain Imaging More Affordable and Portable". IEEE Spectrum. Retrieved 2026-09-11.
  9. Khan, Asif Islam; Chatterjee, Korok; et al. (2015). "Negative capacitance in a ferroelectric capacitor". Nature Materials. 14 (2): 182–186. doi:10.1038/nmat4148. PMID 25502099.
  10. Cheema, Suraj S.; et al. (2022). "Emergent ferroelectricity in subnanometer binary oxide films on silicon". Science. 376 (6593): 648–652. doi:10.1126/science.abm8642. PMID 35536900.
  11. Cheema, Suraj S.; et al. (2022). "Ultrathin ferroic HfO2–ZrO2 superlattice gate stack for advanced transistors". Nature. 604 (7904): 65–71. doi:10.1038/s41586-022-04425-6.
  12. "Sayeef Salahuddin". National Science Foundation. Retrieved 2026-09-11.
  13. প্রতিবেদক, নিজস্ব (2016-02-22). "বিজ্ঞান ও প্রকৌশলে মার্কিন সর্বোচ্চ সম্মাননা পাচ্ছেন বাংলাদেশি গবেষক". Prothomalo (in Bengali). Retrieved 2026-09-10.
  14. "Elad Alon, Sayeef Salahuddin and Dawn Song elected IEEE Fellows class of 2019". UC Berkeley EECS. Retrieved 2026-09-11.
  15. "Sayeef Salahuddin". IEEE Awards. Retrieved 2026-09-11.
  16. "Sayeef Salahuddin receives James C. McGroddy Prize for New Materials". UC Berkeley EECS. Retrieved 2026-09-11.
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