Doctoral Position in Mid-Infrared Integrated Photonics and Optical Sensing
Zürich, Switzerland
Doctoral Position in Mid-Infrared Integrated Photonics and Optical Sensing
100%, Zurich, fixed-term
The Optical Nanomaterial Laboratory in the Physics Department at ETH Zurich is looking for a doctoral researcher in mid-infrared integrated photonics and optical sensing. Mid-infrared (MIR) photonics enables highly sensitive and selective spectroscopic detection of molecular species and has applications in environmental monitoring, biomedical diagnostics, industrial process control, and fundamental research.
Project background
The project will focus on the development of integrated MIR photonic devices for advanced optical sensing and spectroscopy. The successful candidate will work at the interface of integrated photonics, nonlinear optics, and MIR spectroscopy, contributing to the design, simulation, fabrication, and experimental characterization of photonic devices.
Job description
- This doctoral project provides training across the complete development cycle of MIR integrated photonic devices
- The doctoral student will develop numerical models, design photonic layouts and contribute to micro- and nanofabrication processes in the cleanroom, and perform optical and electrical measurements to evaluate device performance
- The work will also involve MIR optical characterization, spectroscopy experiments, and data analysis
Profile
- The successful candidate should be highly motivated, curious, rigorous, and creative, with an interest in addressing technically demanding experimental challenges
- Applicants should hold, or be close to obtaining, a Master’s degree in physics, electrical engineering, photonics, materials science, or a related field
- The position will involve significant cleanroom work; prior experience in micro- and nanofabrication is therefore highly beneficial
Experience in one or more of the following areas is advantageous:
- Micro- and nanofabrication, lithography, etching, thin-film processing, or cleanroom work
- Integrated photonics, waveguide optics, nanophotonics, or MIR photonics
- Optical characterization, laser-based experiments, or spectroscopy
- Numerical modelling and simulation of optical or multiphysics devices
- Python, MATLAB, or similar tools for scientific data analysis and automation
- Nonlinear optics, frequency conversion, radio-frequency electronics
Workplace
Workplace
We offer
We offer a fully funded doctoral position in an international and interdisciplinary research environment, with access to advanced cleanroom facilities, photonics laboratories, simulation tools, and state-of-the-art MIR measurement equipment. The position provides broad training in integrated photonic-device development, from device design and fabrication to experimental demonstration. The successful candidate will have opportunities to contribute to scientific publications, attend international conferences, and collaborate with academic partners. Aditionally you become part of ETH Zurich, which not only supports your professional development, but also actively contributes to positive change in society. You can also expect numerous benefits, such as public-transport season tickets and car sharing, a wide range of sports offered by ASVZ, childcare, and attractive pension benefits.
We value diversity and sustainability
Curious? So are we.
We look forward to receiving your application with the following documents:
- A cover letter
- Your CV
- Transcripts of Bachelor’s and Master’s degrees
- Contact information for two referees
Further information about the Optical Nanomaterial Laboratory can be found on our Website.
Please note that we exclusively accept applications submitted through our online application portal. Applications via email or postal services will not be considered.
We would like to point out that the pre-selection is carried out by the responsible recruiters and not by artificial intelligence.
The start date is flexible. The position is intended for four years, subject to institutional regulations and satisfactory progress.