Valitse alue, joka parhaiten vastaa sijaintiasi tai mieltymyksiäsi.
Tämä asetus hallitsee käyttöliittymän kieltä, mukaan lukien painikkeet, valikot ja kaikki sivuston tekstit. Valitse haluamasi kieli parhaan selauskokemuksen saamiseksi.
Valitse kielet työpaikkailmoituksille, jotka haluat nähdä. Tämä asetus määrittää, mitkä työpaikkailmoitukset näytetään sinulle.
The European Synchrotron, the ESRF, is an international research centre based in Grenoble, France.
Through its innovative engineering, pioneering scientific vision and a strong commitment from its 700 staff members, the ESRF is recognised as one of the top research facilities worldwide. Its particle accelerator produces intense X-ray beams that are used by thousands of scientists each year for experiments in diverse fields such as biology, medicine, environmental sciences, cultural heritage, materials science, and physics.
Supported by 19 countries, the ESRF is an equal opportunity employer and encourages diversity.
Thesis subject: Sub Nanosecond Imaging of Operating Microelectronic Devices by X-ray Diffraction Microscopy Beamline ID01, at the ESRF is a world leading instrument dedicated to micro- and nano-beam X-ray diffraction imaging experiments. It enables advanced studies of epitaxial materials and microelectronic devices, including time-resolved full-field diffraction microscopy. The ID01 team has successfully carried out several lighthouse experiments that attract collaborators and users worldwide.
The successful candidate will join the team and collaborate with a network of European semiconductor device research groups and technology organizations. These partners focus on applied materials and devices in the time domain. In particular, the project addresses key challenges limiting efficiency and life-time of microelectronic and optoelectronic devices based on SiGe(Sn) heterostructures, namely heat generation and strain-induced degradation during operation. The improvement of device design and fabrication requires an experimental technique capable of probing the spatial and temporal distribution of lattice strain under realistic operating conditions. This can be achieved usingX-ray Diffraction Microscopy in the unique set-up at ID01.. This project will provide fundamental understanding of thermomechanical behaviour and energy dissipation in technologically and economically relevant semiconductor devices. In addition, it will advance the X-ray diffraction microscopy methodology toward 3D spatial and temporal strain-temperature imaging for the optimization of next-generation electronic and optoelectronic devices.
Further information may be obtained from:
Tobias Schülli (tel.: +33 (0)4 76 88 22 80, email: [email protected]),
The successful candidate will have to assure to fulfil all conditions and respect deadlines for enrolment in the doctoral school at Department of Sciences, Rome Tre University, Roma, Italy.
Do you recognize yourself in this description? Apply now for your next professional adventure!
What we offer:
The ESRF is an equal opportunity employer and encourages applications from disabled persons.
The ESRF is an X-ray light source for Europe. It is located in Grenoble, France, and supported and shared by 20 countries.
Käy työnantajan sivulla