Supriyo Datta
Active 1979–2025
- 92
- Papers
- 30,696
- Citations
- 54
- h-index
- 76
- i10-index
Citations
Citation sources
Countries
Institutions
Fields
- Engineering44.8%
- Physics and Astronomy24.6%
- Materials Science14.7%
- Computer Science13.6%
- Biochemistry, Genetics and Molecular Biology1.2%
- Chemistry0.3%
- Other0.8%
Topics
- Quantum and electron transport phenomena9.7%
- Advanced Memory and Neural Computing7%
- Advancements in Semiconductor Devices and Circuit Design6.9%
- Semiconductor materials and devices6.5%
- Ferroelectric and Negative Capacitance Devices6.3%
- Molecular Junctions and Nanostructures5%
- Other58.6%
Coauthors
- Kerem Y. Çamsarı22
- Kerem Yunus Çamsari13
- Rafatul Faria12
- Mark Lundstrom9
- Behtash Behin-Aein7
- Ahmed Zeeshan Pervaiz6
- R. Reifenberger6
- Lakshmi Anirudh Ghantasala5
- Orchi Hassan5
- Shuvro Chowdhury5
- Clifford P. Kubiak4
- Giovanni Finocchio4
- Hideo Ohno4
- Jan Kaiser4
- Jason I. Henderson4
- Jing Guo4
- Risi Jaiswal4
- Sayeef Salahuddin4
- Shunsuke Fukami4
- Avik W. Ghosh3
- Azad Naeemi3
- Biswajit Das3
- J. Joshua Yang3
- J.H. Kaiser3
All papers
- Integer factorization using stochastic magnetic tunnel junctions
Authors: William A. Borders, Ahmed Zeeshan Pervaiz, Shunsuke Fukami, Kerem Y. Çamsarı, Hideo Ohno, Supriyo Datta - Nature, Nat. 2019 cited by 628
- p-Bits for Probabilistic Spin Logic
Authors: Kerem Yunus Çamsari, Brian M. Sutton, Supriyo Datta - Applied Physics Reviews 2019 cited by 213
- Stochastic p-Bits for Invertible Logic
Authors: Kerem Y. Çamsarı, Rafatul Faria, Brian Sutton, Supriyo Datta - Physical Review X 2017 cited by 322
- Hardware-Aware In Situ Learning Based on Stochastic Magnetic Tunnel Junctions
Authors: J.H. Kaiser, William A. Borders, Kerem Y. Çamsarı, Shunsuke Fukami, Hideo Ohno, Supriyo Datta - Physical Review Applied 2022 cited by 95
- Probabilistic computing with p-bits
Authors: J.H. Kaiser, Supriyo Datta - Applied Physics Letters 2021 cited by 103
- Implementing p-bits With Embedded MTJ
Authors: Kerem Y. Çamsarı, Sayeef Salahuddin, Supriyo Datta - IEEE Electron Device Letters 2017 cited by 200
- Roadmap for unconventional computing with nanotechnology
Authors: Giovanni Finocchio, Jean Anne C. Incorvia, Joseph S. Friedman, Yang Qu, Anna Giordano, Julie Grollier, Hyunsoo Yang, Florin Ciubotaru, Andrii V. Chumak, Azad Naeemi, Sorin Cotöfană, Riccardo Tomasello, C. Panagopoulos, Mario Carpentieri, Peng Lin, Gang Pan, J. Joshua Yang, Aida Todri‐Sanial, Gabriele Boschetto, Kremena Makasheva, Vinod K. Sangwan, Amit Ranjan Trivedi, Mark C. Hersam, Kerem Y. Çamsarı, Peter L. McMahon, Supriyo Datta, Belita Koiller, G. H. Aguilar, Guilherme P. Temporão, Davi R. Rodrigues, Satoshi Sunada, Karin Everschor‐Sitte, Kosuke Tatsumura, Hayato Goto, Vito Puliafito, Johan Åkerman, Hiroki Takesue, Massimiliano Di Ventra, Yuriy V. Pershin, Saibal Mukhopadhyay, Kaushik Roy, I‐Ting Wang, Wang Kang, Zhu Yao, Brajesh Kumar Kaushik, Jennifer Hasler, Samiran Ganguly, Avik W. Ghosh, William B. Levy, Vwani Roychowdhury, Supriyo Bandyopadhyay - Nano Futures 2024 cited by 73
- Quantum Transport: Atom to Transistor
Authors: Supriyo Datta - Cambridge University Press eBooks 2005 cited by 3,234
- Use of Negative Capacitance to Provide Voltage Amplification for Low Power Nanoscale Devices
Authors: Sayeef Salahuddin, Supriyo Datta - Nano Letters 2007 cited by 2,130
- Hardware emulation of stochastic p-bits for invertible logic
Authors: Ahmed Zeeshan Pervaiz, Lakshmi Anirudh Ghantasala, Kerem Yunus Camsari, Supriyo Datta - Scientific Reports 2017 cited by 103
- Autonomous Probabilistic Coprocessing With Petaflips per Second
Authors: Brian M. Sutton, Rafatul Faria, Lakshmi Anirudh Ghantasala, Risi Jaiswal, Kerem Yunus Çamsari, Supriyo Datta - IEEE Access 2020 cited by 64
- Nanoscale device modeling: the Green’s function method
Authors: Supriyo Datta - Superlattices and Microstructures 2000 cited by 1,212
- Accelerated quantum Monte Carlo with probabilistic computers
Authors: Shuvro Chowdhury, Kerem Y. Çamsarı, Supriyo Datta - Communications Physics 2023 cited by 30
- Electronic analog of the electro-optic modulator
Authors: Supriyo Datta, Biswajit Das - Applied Physics Letters 1990 cited by 4,773
- Implementing Bayesian networks with embedded stochastic MRAM
Authors: Rafatul Faria, Kerem Y. Çamsarı, Supriyo Datta - AIP Advances 2018 cited by 68
- Low-Barrier Magnet Design for Efficient Hardware Binary Stochastic Neurons
Authors: Orchi Hassan, Rafatul Faria, Kerem Yunus Camsari, Jonathan Z. Sun, Supriyo Datta - IEEE Magnetics Letters 2019 cited by 66
- Scalable Emulation of Sign-Problem–Free Hamiltonians with Room-Temperature p-bits
Authors: Kerem Y. Camsari, Shuvro Chowdhury, Supriyo Datta - Physical Review Applied 2019 cited by 48
- Quantitative Evaluation of Hardware Binary Stochastic Neurons
Authors: Orchi Hassan, Supriyo Datta, Kerem Yunus Çamsari - Physical Review Applied 2021 cited by 35
- Hardware emulation of stochastic p-bits for invertible logic.
Authors: Ahmed Zeeshan Pervaiz, Lakshmi Anirudh Ghantasala, Kerem Y. Çamsarı, Supriyo Datta - 2017 cited by 58
- From Charge to Spin and Spin to Charge: Stochastic Magnets for Probabilistic Switching
Authors: Kerem Y. Çamsarı, Punyashloka Debashis, Vaibhav Ostwal, Ahmed Zeeshan Pervaiz, Tingting Shen, Zhihong Chen, Supriyo Datta, Joerg Appenzeller - IEEE, Proc. IEEE 2020 cited by 45
- Hardware implementation of Bayesian network building blocks with stochastic spintronic devices
Authors: Punyashloka Debashis, Vaibhav Ostwal, Rafatul Faria, Supriyo Datta, Joerg Appenzeller, Zhihong Chen - Scientific Reports 2020 cited by 35
- Theory of ballistic nanotransistors
Authors: Anisur Rahman, Jing Guo, Supriyo Datta, Mark Lundstrom - IEEE Transactions on Electron Devices 2003 cited by 773
- nanoMOS 2.5: A two-dimensional simulator for quantum transport in double-gate MOSFETs
Authors: Zhibin Ren, R. Venugopal, Sebastien Goasguen, Supriyo Datta, Mark Lundstrom - IEEE Transactions on Electron Devices 2003 cited by 295
- Hardware Design for Autonomous Bayesian Networks
Authors: Rafatul Faria, Jan Kaiser, Kerem Yunus Çamsari, Supriyo Datta - Frontiers in Computational Neuroscience, Frontiers Comput. Neurosci. 2021 cited by 31
