Postdoc in Resource-Efficient Programmable Photonics – DTU Electro
Danmarks Tekniske Universitet
Job Description:We are searching for an excellent, ambitious, and driven experimentalist for a 3-year postdoc position to drive a project aiming to develop resource-efficient programmable photonic circuits in thin-film lithium niobate (TFLN) [Zhu2021] and tantalate (TFLT) [Powell2024]. Using the ultrafast Pockels effect in TFLN/TFLT, you will build high-speed cavity-based components [Larocque2024] that process information in temporal rather than spatial modes to reduce their footprint. The project involves a collaboration between DTU Electro (Senior Researcher Mikkel Heuck) and Harvard University (Dr. Neil Sinclair and Prof. Marko Lončar), where TFLN devices will be fabricated at DTU and TFLT at Harvard.Scientific Environment
The project is funded by and anchored at DTU Electro in the , which focuses on leveraging fundamental light-matter interactions for applications in sensing, optical communications, and quantum technologies. The scientific environment at our department is vibrant and highly collaborative with world-class scientists covering a broad range of expertise in photonics and electronics. Our Harvard collaborators pioneered low-loss TFLN photonics [Zhu2021] and recently demonstrated TFLT as a promising alternative to TFLN with improved DC voltage stability [Powell2024].The Project in Short
The project focuses on developing TFLN and TFLT photonic integrated circuit (PIC) platforms for classical and quantum information processing. Our approach involves cavity-based components with electrically controllable cavity-waveguide couplings that surpass the time-bandwidth limit of static cavities [Xue2022]. With these components as building blocks, we envision large-scale recirculating circuit architectures [Heuck2023b] that trap light to reduce the number of controllable components.Our long-term goal is to develop a general-purpose PIC platform, so we welcome applicants interested in sensors, optical communications, AI hardware accelerators, or quantum information science.Responsibilities and Qualifications
Your primary responsibilities will be centered around the fabrication and characterization of TFLN/TFLT PICs. The TFLN fabrication will be carried out in DTU’s state-of-the-art nanofabrication facility, , and the fabrication of TFLT devices will be done during visits to Harvard University. You will have the opportunity to co-supervise BSc, MSc, and PhDs, and we expect you to actively engage with the team and make your expertise available to your colleagues.We seek a talented physicist with an outstanding drive and excellent scientific achievements.Required qualifications:
Desired qualifications:
Additionally, we expect that you:
As a formal qualification, you must hold a PhD degree (or equivalent).Assessment
Candidates will be assessed by Senior Researcher/Associate Professor Mikkel Heuck.We offer
DTU is a leading technical university globally recognized for the excellence of its research, education, innovation, and scientific advice. We offer a rewarding and challenging job in an international environment. We strive for academic excellence in an environment characterized by collegial respect and academic freedom tempered by responsibility.Salary and appointment terms
The appointment will be based on the collective agreement with the Danish Confederation of Professional Associations. The allowance will be agreed upon with the relevant union.Starting date is 1 July 2025 (or according to mutual agreement). The position is a full-time 3-year position.You can read more about .Further information
Further information may be obtained from Dr. Mikkel Heuck, .You can read more about and the .If you apply from abroad, you may find helpful information on .Application
Please submit your online application no later than 4 April 2025 (23:59 Danish time). Applications must be submitted as one PDF file containing all materials to be given consideration. To apply, please open the link “Apply online”, fill out the online application form, and attach all your materials in English in one PDF file. The file must include:
Applications and enclosures received after the deadline will not be considered.All interested candidates irrespective of age, gender, disability, race, religion or ethnic background are encouraged to apply. As DTU works with research in critical technology, which is subject to special rules for security and export control, open-source background checks may be conducted on qualified candidates for the position.DTU Electro has more than 300 employees with competencies in electrical and photonics engineering. Research is performed within nanophotonics, lasers, quantum photonics, optical sensors, LEDs, photovoltaics, ultra-high speed optical transmission systems, bio-photonics, acoustics, power electronics, robotics, and autonomous systems.Technology for people
DTU develops technology for people. With our international elite research and study programmes, we are helping to create a better world and to solve the global challenges formulated in the UN’s 17 Sustainable Development Goals. Hans Christian Ørsted founded DTU in 1829 with a clear mission to develop and create value using science and engineering to benefit society. That mission lives on today. DTU has 13,500 students and 6,000 employees. We work in an international atmosphere and have an inclusive, evolving, and informal working environment. DTU has campuses in all parts of Denmark and in Greenland, and we collaborate with the best universities around the world.References
[Heuck2023a] Heuck, M. . in CLEO/Europe-EQEC, CI-1.5 (2023).
[Heuck2023b] Heuck, M., Englund, D. R. & Jacobs, K. . US Patent, 11556046 (2023).
[Larocque2024] Larocque, H., Vitullo, D. L. P., Sludds, A., Sattari, H., Christen, I., Choong, G., Prieto, I., Leo, J., Zarebidaki, H., Lohani, S., Kirby, B. T., Soykal, O., Soltani, M., Ghadimi, A. H., Englund, D. R. & Heuck, M. . ACS Photonics 11, 3860-3869 (2024).
[Powell2024] Powell, K., Li, X., Assumpcao, D., Magalhães, L., Sinclair, N. & Lončar, M. . Opt. Express 32, 44115 (2024).
[Xue2022] Xue, Y., Gan, R., Chen, K., Chen, G., Ruan, Z., Zhang, J., Liu, J., Dai, D., Guo, C. & Liu, L. . Optica 9, 1131-1137 (2022).
[Zhu2021] Zhu, D., Shao, L., Yu, M., Cheng, R., Desiatov, B., Xin, C. J., Hu, Y., Holzgrafe, J., Ghosh, S., Shams-Ansari, A., Puma, E., Sinclair, N., Reimer, C., Zhang, M. & Lončar, M. . Adv. Opt. Photon., AOP 13, 242-352 (2021).
Kongens Lyngby, Hovedstaden – Lyngby, Midtjylland
Sun, 16 Mar 2025 06:14:48 GMT
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