About this event
QoolQit is a Python library for designing and compiling analog quantum programs for neutral-atom devices. By separating the quantum program from the underlying hardware implementation, it enables a more portable and flexible approach to analog quantum programming.
In this webinar, you'll discover the motivation behind QoolQit, how it fits within the Pasqal Software Stack, and how it introduces a hardware-agnostic programming model for developing analog quantum programs. The session concludes with a live demonstration showcasing QoolQit integrated with Pasqal Cloud.
By the end of the webinar, you will:
❇️ Understand the design principles behind QoolQit and the motivation for a hardware-agnostic programming model.
❇️ Learn how QoolQit separates quantum program design from hardware implementation to enable portable analog quantum programming.
❇️ See how QoolQit fits within the Quantum Programming layer of the Software Stack.
❇️ Follow a complete QoolQit workflow, from program design and compilation to execution on Pasqal Cloud.
This webinar is for anyone interested in developing analog quantum programs for neutral-atom quantum computers without having to master the underlying hardware implementation or the physics of neutral-atom devices.
You'll benefit from this session if you:
💡 Want to understand how hardware-agnostic analog quantum programming works.
⚙️ Are developing quantum algorithms and want to focus on the program rather than the hardware details.
📌 Use Pulser and are interested in a higher-level programming workflow.
🔎 Are looking for a more accessible way to develop analog quantum programs for neutral-atom platforms.
⚛️ Work in heterogeneous research team focusing on applications and want to discover how QoolQit can facilitate the development of hybrid classical-quantum solutions
Hosted by
Lucia leads Pasqal’s quantum computing community, fostering engagement across researchers, developers, and industry practitioners. She is passionate about growing an inclusive ecosystem around analog quantum computing by connecting people, sharing knowledge, and creating opportunities for collaboration and learning.
Francesco is responsible for defining and leading the roadmap and development of the in-house built software which is used to write, run and compile quantum programs. He brings solid scientific knowledge coupled with a strong experience in product management in the deep-tech industry.
Vittorio leads algorithm development for the Rydberg Analog Model, focusing on combinatorial optimization, hybrid classical-quantum methods, and quantum simulation on neutral-atom QPUs. He is also a core contributor and active maintainer of QoolQit, Pasqal's open-source library for analog quantum computing. He is passionate about making analog quantum computing accessible to a broader community through practical software tools.
Quantum computing is already transforming the world we live in. Seizing the innovative momentum of technology is a crucial opportunity for businesses and people everywhere.