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Professor Michael Strain

Institute of Photonics

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Personal statement

My research group has expertise in the design and micro-fabrication of Photonic Integrated Circuit (PIC) technologies across a wide range of material platforms. 泭We develop new materials for specialist applications and collaborate with industrial partners to ensure the future scalability and foundry compatability of these techniques.

Silicon PICs:泭I have a significant background in the design and micro-fabrication of integrated silicon photonics and have developed devices for applications from sensing and information processing, to cavity-enhanced non-linear interactions and quantum optics. 泭In particular I am interested in the development of scalable PICs that can be easily electronically tuned and addressed with simple fibre optics and am developing technologies to take this technology from device to systems levels. 泭This work is supported by strong collaboration with the James Watt Nanofabrication Centre at the University of Glasgow. 泭

Future Materials: 泭Not all optical functions can be realised with standard foundry material platforms such as silicon and InP. 泭We develop new material systems for specific applications, such as ultra-thin-film diamond for quantum optics, together with the advanced micro-processing required to create optical devices. 泭We have interests in single crystal diamond, III-nitrides and complex oxide materials.

Heterogeneous Integration: 泭Many integrated photonic material platforms have particular strengths (e.g. III-V's for light generation and detection) but are limited in complimentary areas. 泭In this work we seek to marry different materials in single systems to make best use of the material properties where they are needed in PICs. 泭For example, by locally bonding III-V materials to silicon waveguides, the light generation of the III-V's can be created where necessary in a low-loss complex silicon PIC. 泭

This technique also allows photonic integration of specialist materials like diamond with standard PIC technology, giving flexibility in circuit design and the prospect for scaling where materials are scarce and monlithic PIC technology is prohibitive. 泭Other areas of interest are hetereogeneous PICs for mid-IR applications.

Micro-LED imaging arrays:泭We are developing high speed LED displays with pixel dimensions of only a few tens of microns. 泭These devices are used for data transmission (Gb/s), covert imaging and the control and navigation of autonomous robotic agents without the need for electrical signal transmission links. 泭泭

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Publications

, , ,
Optics Continuum Vol 5, pp. 800-810 (2026)
, , Ghosh Saptarsi, , , Kappers Menno, , Oliver Rachel A,
Optics Letters Vol 51, pp. 993-996 (2026)
Peng Kun, Morgan Nicholas P, , Wagner Ford M, Siday Thomas, Xia Chelsea Q, Dede Didem, Boureau Victor, Piazza Valerio, , , , , Fu Lan, Tan Hark H, Jagadish Chennupati, Morral Anna Fontcuberta i, Johnston Michael B
2025 IEEE Photonics Conference (IPC) IEEE Photonics Conference 2025 2025 IEEE Photonics Conference (IPC), pp. 1-2 (2025)
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Optics Letters Vol 50, pp. 7227-7230 (2025)
, , , McKendry Jonathan, Gao Qian, Tan Hoe, Jagadish Chennupati, ,
2025 30th Microoptics Conference (2025)
Boes Andreas, , Chang Lin, Nader Nima
Applied Physics Letters Vol 127 (2025)

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Research Interests

  • Silicon Photonic Integrated Circuits (in the near and mid-IR)
  • Heterogeneous integration (e.g. III-V on SOI)
  • Wide-bandgap integrated optics (diamond, GaN)
  • Waveguide and on-chip resonators for NLO
  • III-V micro-lasers
  • Chip-scale vector beam sources
  • Structured illumination for imaging and data comms.

Professional Activities

Speaker
25/10/2025
Contributor
8/12/2020
Invited speaker
4/10/2020
Contributor
28/9/2020
Contributor
28/9/2020
Contributor
28/9/2020

Projects

Strain, Michael (Principal Investigator)
01-Jan-2025 - 31-Jan-2029
Strain, Michael (Principal Investigator)
01-Jan-2025 - 31-Jan-2026
Strain, Michael (Principal Investigator) Hastie, Jennifer (Co-investigator) Graham, Nathan (Research Co-investigator)
01-Jan-2025 - 01-Jan-2029
Strain, Michael (Principal Investigator)
01-Jan-2025 - 30-Jan-2026
Lunn, Rebecca (Principal Investigator) Strain, Michael (Principal Investigator) Hurtado, Antonio (Co-investigator) Stillings, Mark (Co-investigator) Quinn, Gemma (Research Co-investigator)
01-Jan-2024 - 01-Jan-2028
Strain, Michael (Principal Investigator) Caspani, Lucia (Co-investigator)
01-Jan-2024 - 28-Jan-2027

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Contact

Professor Michael Strain
Institute of Photonics

Email: michael.strain@strath.ac.uk
Tel: 548 4703