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  1. Home
  2. Indian Institute of Technology Madras
  3. Publication1
  4. Efficient Probabilistic Computing with Stochastic Perovskite Nickelates
 
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Efficient Probabilistic Computing with Stochastic Perovskite Nickelates

Date Issued
09-11-2022
Author(s)
Park, Tae Joon
Selcuk, Kemal
Zhang, Hai Tian
Manna, Sukriti
Batra, Rohit
Wang, Qi
Yu, Haoming
Aadit, Navid Anjum
Sankaranarayanan, Subramanian K.R.S.
Zhou, Hua
Camsari, Kerem Y.
Ramanathan, Shriram
DOI
10.1021/acs.nanolett.2c03223
Abstract
Probabilistic computing has emerged as a viable approach to solve hard optimization problems. Devices with inherent stochasticity can greatly simplify their implementation in electronic hardware. Here, we demonstrate intrinsic stochastic resistance switching controlled via electric fields in perovskite nickelates doped with hydrogen. The ability of hydrogen ions to reside in various metastable configurations in the lattice leads to a distribution of transport gaps. With experimentally characterized p-bits, a shared-synapse p-bit architecture demonstrates highly parallelized and energy-efficient solutions to optimization problems such as integer factorization and Boolean satisfiability. The results introduce perovskite nickelates as scalable potential candidates for probabilistic computing and showcase the potential of light-element dopants in next-generation correlated semiconductors.
Volume
22
Subjects
  • complex oxide

  • hydrogen

  • metal−insulator trans...

  • neuromorphic computin...

  • perovskite nickelates...

  • probabilistic computi...

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