Quantum Computing & Simulation
Quantum Matter & Simulation
Quantum simulations and theoretical methods for quantum matter.

This research line focuses on the theoretical study and control of quantum matter, with a particular emphasis on quantum simulations, in close connection with experiments. It includes ultracold atomic systems as versatile platforms for simulating complex condensed matter models and exploring phenomena in high-energy physics. It also addresses the control and manipulation of quantum matter for potential quantum applications, such as precision measurement and information processing. In addition, the development of theoretical methods provides tools to describe, model, and predict the behavior of complex quantum systems, thereby enabling a deeper understanding of many-body phenomena and emergent quantum effects.
9 people in this line
| Name | Position | Research lines |
|---|---|---|
| Alcaine, Jesus Matias | PhD Student | Quantum Matter & Simulation |
| Arazo Sanchez, Maria | Postdoc Fellow | Quantum Matter & Simulation |
| Bru, Jean-Bernard | Ikerbasque Research Professor | Quantum Info & Quantum Math, Quantum Matter & Simulation |
| Cobos, Jesus | PhD Student | Quantum Matter & Simulation |
| Di Marcantonio, Francesco | PhD Student | Quantum Matter & Simulation |
| Modugno, Michele | Ikerbasque Research Professor | Quantum Matter & Simulation |
| Rico, Enrique | External Scientific Member | Quantum Matter & Simulation |
| Sherman, Evgeny | Ikerbasque Research Professor | Quantum Matter & Simulation |
| Vega, Luis | Full Professor | Quantum Info & Quantum Math, Quantum Matter & Simulation |

