Boosting Quantum Integrated Quantum Optics with Structured Photons (BIQOS)

Description of the granted funding

Quantum technologies are on the verge of entirely changing the way we compute, sense, and communicate information. At the forefront of future photonic quantum communication schemes are so-called high-dimensional quantum states. Such states not only allow enlarging the data capacity of a single particle of light, i.e. photon, but also improving the noise resilience in unconditionally secure quantum cryptography schemes. In this project performed at Tampere University, I will develop a chip-based integration method for the spatial structure of photons, one of the most popular physical realizations of high-dimensional quantum states. The technology will enable an enhanced generation, detection, and modulation as well as some of the most promising quantum photonics applications, like an integrated entanglement distribution and novel linear optical networks. Thus, the project will elevate fundamental studies and bridge the gap to everyday applications of photonic quantum technologies.
Show more

Starting year

2020

End year

2025

Granted funding

Robert Fickler Orcid -palvelun logo
438 874 €

Related funding decisions

336375
Research costs of Academy Research Fellows(2020)
239 993 €

Funder

Research Council of Finland

Funding instrument

Academy research fellows

Other information

Funding decision number

332399

Fields of science

Physical sciences

Research fields

Optiikka, akustiikka

Identified topics

quantum computing, quantum technology