Lund University was founded in 1666 and is repeatedly ranked among the world's top universities. The University has around 46,000 students and 8,500 staff based in Lund, Helsingborg, and Malmö. We are united in our efforts to understand, explain, and improve our world and the human condition.
This position will be linked to a major new project financed by the European Innovation Council: Picosecond-scale Photonic Heterogeneous Integrated Neuromorphic Detector (Phinder). The project will enable picosecond-scale, high throughput, optical event detection and analysis by fabricating and demonstrating a dynamic photonic sensor array with on-chip neuromorphic intelligence. This is enabled by significantly advancing the state of the art in optoelectronic algorithm-hardware co-design and multi-scale heterogeneous integration. A central aim of the work at Lund University is to fabricate III-V nanowire based neural nodes communicating at telecom wavelengths and functioning as sensors at variable wavelengths, while also verifying eventual performance levels for spikes at the picosecond time and femtosecond energy scale. The project will be interdisciplinary and involve groups across Europe that work on optoelectronic architecture, sensor geometries and algorithms and integration with advanced waveguiding platforms.
You will primarily devote yourself to your doctoral education, which mainly consists of writing a doctoral thesis. You are expected to participate in a research project, doctoral courses, seminars, and conferences. The project takes its starting point in high performance nanostructures developed for solar-energy harvesting and light emitting diodes and will use them for building artificial neural components that use light for interconnects and electrical signals for memory and signal analysis. You will work on developing and exploring the synthesis, processing, properties, and performance of nanowire-based devices for nanophotonic based neuromorphic computing and optical sensing. Your work will include design, modelling, realization, and characterisation of nanophotonic devices based on group III-V materials. The work will engage researchers across different scientific disciplines that collaborate. In addition to studies, a maximum of 20% of working time may be spent on teaching and other departmental work.
To be eligible for admission and employment as a doctoral student, you must fulfil the requirements below.
A person meets the general admission requirements for third-cycle courses and study programmes if the applicant:
A person meets the specific admission requirements for third cycle studies in physics, nanoscience, material science if the applicant has:
In order to complete the doctoral programme in question, the following are also required:
The selection of eligible applicants will be made taking into account the ability to benefit from the training based on the following criteria:
Lund University is a public authority which means that employees get particular benefits, generous annual leave and an advantageous occupational pension scheme.
More about working at Lund University on lu.se.
The employment is a fixed-term employment at full time, starting as soon as possible. Third cycle studies at the Science Faculty consist of full-time studies for 4 years. In the case of teaching and other departmental duties, the employment is extended accordingly. Doctoral studentships are regulated in the Higher Education Ordinance (1993:100), chapter 5, 1-7 §§.
More about terms of employment for doctoral students on Lund University's Staffpages.
The application should be written in English and you must attach to your application:
We welcome your application.
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