Chirality based all-optical logic gates

Akronyymi

ChirLog

Rahoitetun hankkeen kuvaus

With the ever-growing demand for carrying and processing data in a fast and efficient way, optical computing and processing methods have become a promising candidate for the next-generation computing and processing applications, due to many advantages, such as high-speed and parallel data processing, compared to their electronic counterparts. In this project, I plan to construct the world first chirality-based all-optical logic gates. The initial plan is to significantly extend the preliminary results to many other nonlinear optical processes in monolayer two-dimensional layered materials with the aim to construct various chirality logic gates such as XNOR, XOR, NOR, AND, NAND, OR, Buffer, and NOT gates. I will also construct ultrafast (<10 fs) multiple-logic functions simultaneously with phase-matching-free nonlinear optics. Further, I will combine the valley properties of two-dimensional materials to demonstrate electrically configurable chirality logic gates. The chirality logic gates built in this project will work fundamentally different from the previously demonstrated optical gates, which will offer numerous advantages (e.g., atomically thin footprint, multiple processing, parallel operation, and ultrafast processing speed across a wide range of wavelengths).
Näytä enemmän

Aloitusvuosi

2022

Päättymisvuosi

2024

Myönnetty rahoitus

215 534.4 €
Coordinator
THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE (UK)
Participant
FUNDACIO INSTITUT DE CIENCIES FOTONIQUES (ES)
Participant

Myönnetty summa

215 534 €

Rahoittaja

Euroopan unioni

Rahoitusmuoto

HORIZON Unit Grant

Puiteohjelma

Horizon Europe (HORIZON)

Haku

Ohjelman osa
Marie Skłodowska-Curie Actions (MSCA) (11677)
Aihe
MSCA Postdoctoral Fellowships 2021 (HORIZON-MSCA-2021-PF-01-01)
Haun tunniste
HORIZON-MSCA-2021-PF-01

Muut tiedot

Rahoituspäätöksen numero

101067269

Tunnistetut aiheet

photonics, optics, laser