论文标题
用随机钙钛矿镍酸盐的有效概率计算
Efficient Probabilistic Computing with Stochastic Perovskite Nickelates
论文作者
论文摘要
概率计算已成为解决硬性优化问题的可行方法。具有固有随机性的设备可以极大地简化其在电子硬件中的实现。在这里,我们展示了通过钙钛矿镍掺杂的氢场中的电场控制的固有随机电阻切换。氢离子驻留在晶格中各种亚稳态构型中的能力导致传输间隙的分布。通过实验表征的p-bits,共享的共享p-bit架构显示出高度平行和节能的解决方案,用于优化问题,例如整数分解和布尔 - 可满足性。结果将钙钛矿作为概率计算的可扩展潜在候选物,并展示了下一代相关的半导体中光元素掺杂剂的潜力。
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.