Sort by
Refine Your Search
-
, deployment, and commissioning of free-space optical links in the metropolitan area of Barcelona. These links will serve as test platforms for various quantum communication devices in ground-to-ground scenarios
-
. The successful candidate will be joining the Atomic Quantum Optics group led by Prof. Dr. Morgan Mitchell and the tasks and responsibilities will be: Conduct experimental research in the following
-
quantum simulator. The goal is to construct a new experimental tool based on a graphene superlattice to not only measuring macroscopic observables, such as electrical resistivity and magnetization, but also
-
and Prof. Frank Koppens (ICFO). We are seeking a highly motivated and skilled Quantum Materials Research Scientist to join our cutting-edge project, focusing on the exploration and development
-
lasers based on colloidal quantum dot technology. The aim is to develop the first chip-integrated infrared quantum dot laser emitting in the telecom wavelength regime as well as in longer wavelengths
-
. The successful candidate will be joining the Atomic Quantum Optics group led by Prof. Dr. Morgan Mitchell. The group has several active research topics focused on hot-vapor quantum sensors, including
-
. The successful candidate will be joining the Quantum Nano-Optoelectronics group led by Prof. Dr. Frank Koppens and will design graphene-based terahertz receivers and evaluate speed and bit transfer rate. Funded by
-
. The successful candidate will be joining the Atomic Quantum Optics group led by Prof. Dr. Morgan Mitchell. Searches for new particles and forces using table-top experiments is an expanding frontier of fundamental
-
performant, CMOS compatible, infrared colloidal quantum dot photodetectors and light emitters exploiting intersubband transitions. The project is focused in the mid and long wave infrared employing colloidal
-
Spectroscopy Description of Group/Project: The AMS group focus on the atomic-scale engineering of the quantum properties of novel nanomaterials. Our aim is to understand and control quantum phenomena with atomic