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Silicon Optical Memory: Non-Volatile Optoelectronic Devices via Si-SiO$_2$ Hysteresis Effect

Applied Physics 2024-01-09 v1 Optics

Abstract

Implementing on-chip non-volatile optical memories has long been an actively pursued goal, promising significant enhancements in the capability and energy efficiency of photonic integrated circuits. Here, a novel optical memory has been demonstrated exclusively using the semiconductor primary material, silicon. By manipulating the optoelectronic effect of this device, we introduce a hysteresis effect at the silicon-silicon oxide interface, which in turn demonstrates multi-level, non-volatile optical data storage with robust retention and endurance. This new silicon optical memory provides a distinctively simple and accessible route to realize optical data storage in standard silicon foundry processes.

Keywords

Cite

@article{arxiv.2401.03414,
  title  = {Silicon Optical Memory: Non-Volatile Optoelectronic Devices via Si-SiO$_2$ Hysteresis Effect},
  author = {Yuan Yuan and Yiwei Peng and Stanley Cheung and Wayne V. Sorin and Zhihong Huang and Di Liang and Marco Fiorentino and Raymond G. Beausoleil},
  journal= {arXiv preprint arXiv:2401.03414},
  year   = {2024}
}