Yangyang Xu, Yibo Xu, et al.
Mathematical Programming Computation
The ability to process information using light has been the driving force behind the pursuit of all-optical logic gates. This alternative to conventional electronic transistors could define a new paradigm for computer architectures, offering exceptional speed and energy efficiency. However, until now, no proposed platform has met the three crucial requirements of operating at room temperature, providing ultra-fast switching, and being suitable for on-chip integration. By leveraging silicon-on-insulator technology, we have demonstrated integrated exciton-polariton condensation on-chip under ambient conditions, using fully integrated metamaterial-based high-index contrast grating microcavities filled with an organic polymer as the photoactive material. By coupling two resonators and exploiting seeded polariton condensation, we have achieved ultrafast all-optical transistor action and cascadability. This breakthrough paves the way for the development of more complex ultra-fast all-optical logic circuits that can operate at room temperature.
Yangyang Xu, Yibo Xu, et al.
Mathematical Programming Computation
Rubab Ume, Haibo Gong, et al.
AIP Advances
Craig Mahlasi, Sibusisiwe Makhanya, et al.
DS-I Africa Consortium Meeting 2023
Yuka Kaniwa, Masaki Kuribayashi, et al.
MobileHCI 2024