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Exploiting Heterogeneity for Energy Efficiency in Chip Multiprocessors., , , , , и . IEEE J. Emerg. Sel. Topics Circuits Syst., 1 (2): 109-119 (2011)Tunnel FET technology: A reliability perspective., , и . Microelectron. Reliab., 54 (5): 861-874 (2014)Improving energy efficiency of multi-threaded applications using heterogeneous CMOS-TFET multicores., , , , , и . ISLPED, стр. 247-252. IEEE/ACM, (2011)The Impact of Ferroelectric FETs on Digital and Analog Circuits and Architectures., , , , , , , , , и 2 other автор(ы). IEEE Des. Test, 37 (1): 79-99 (2020)Design of 2T/Cell and 3T/Cell Nonvolatile Memories with Emerging Ferroelectric FETs., , , , , , , , , и 1 other автор(ы). IEEE Des. Test, 36 (3): 39-45 (2019)A defect-aware approach for mapping reconfigurable Single-Electron Transistor arrays., , , , , и . ASP-DAC, стр. 118-123. IEEE, (2015)Ferroelectrics: From Memory to Computing., , и . ASP-DAC, стр. 401-406. IEEE, (2020)Ferroelectric Transistor based Non-Volatile Flip-Flop., , , , , и . ISLPED, стр. 10-15. ACM, (2016)Comparative Area and Parasitics Analysis in FinFET and Heterojunction Vertical TFET Standard Cells., , , , , , и . ACM J. Emerg. Technol. Comput. Syst., 12 (4): 38:1-38:23 (2016)Computational paradigms using oscillatory networks based on state-transition devices., , , , и . IJCNN, стр. 3415-3422. IEEE, (2017)