At a Glance
- Tasks: Lead research on spin-optomechanical systems in silicon carbide for quantum technologies.
- Company: Join Heriot-Watt University, a leader in innovative research and technology.
- Benefits: Enjoy 33 days annual leave, competitive salary, and flexible working options.
- Other info: Collaborate with a dynamic team and gain exposure to diverse research topics.
- Why this job: Make a real impact in cutting-edge quantum engineering and device design.
- Qualifications: PhD in relevant field and experience in semiconductor microfabrication required.
The predicted salary is between 31700 - 39600 £ per year.
Overview
Job Description
Role: Postdoctoral Research Associate in Spin-Optomechanical Systems in Silicon Carbide
Directorate: School of Engineering and Physical Sciences
Contract Type: Full Time (1 FTE), Fixed Term (2 years + potential for 1 year extension)
Grade: Grade 7 - £37,694 - £47,389
Rewards and Benefits: 33 days annual leave, plus 9 buildings closed days for all full time staff (Part time workers should pro rata this by their FTE). Use our total rewards calculator: https://www.hw.ac.uk/about/work/total-rewards-calculator.htm to see the value of benefits provided by Heriot-Watt University
Role Description
We are seeking to recruit a postdoctoral research associate to undertake research in a newly-funded EPSRC New Investigator Award project, entitled \"Spin-Optomechanics in Silicon Carbide for Quantum Technologies\". The goal of this project is to develop whispering-gallery-mode optomechanical cavities in the silicon-carbide-on-insulator platform with a solid-state defect colour centre coupled to its optical mode. This system will be used to demonstrate tuning of the colour centre\'s optical emission through optomechanical control. The candidate will be expected to engage in the full device design lifecycle, from design and development as the basis for fabricating the device in the Heriot-Watt cleanroom, to measuring and benchmarking the system\'s performance.
This project is the start of an exciting new research direction in a research environment which provides both the focus and flexibility of a small research team, and the support and exposure to a breadth of research topics brought by our association with the Quantum Photonics Laboratory at Heriot-Watt. Candidates should submit a CV and a cover letter explaining their motivation and interest in this project. Candidates should specifically highlight how they meet the essential criteria for the position, which are listed below.
For more information and informal discussions, please contact Dr Christiaan Bekker (c.bekker@hw.ac.uk).
We especially encourage applications from women and other underrepresented groups in Physics/Engineering, and are willing to discuss flexible working options (including part-time and job share), if relevant to your situation.
About Our Team
The candidate to this position will work within the Quantum Photonics Laboratory within Heriot-Watt\'s Institute for Photonics and Quantum Sciences. This lab consists of six group leaders with several state-of-the-art laboratories for quantum optics and high-resolution laser spectroscopy and facilities for the fabrication and characterisation of novel optoelectronic / quantum devices. We conduct measurements of quantum emitters at room and cryogenic temperatures, radio-frequency control of electronic/nuclear spins, and development of microdevices through photolithographic patterning and etching/deposition techniques with nanoscale resolution.
Within the Quantum Photonics Laboratory, the candidate will work under the supervision of Dr Christiaan Bekker and interact closely with a smaller team specialising in silicon carbide-based quantum devices, including the group of Prof Cristian Bonato. They will have ownership of their own project (including PhD/undergraduate student supervision), developing a new research stream within the group.
Key Duties and Responsibilities
- lead the development, fabrication and benchmarking of on-chip optomechanical cavities including process development in the Heriot-Watt cleanroom and with industrial partners.
- build the experimental setup and carry out measurements to characterise the fabricated devices, including developing fibre coupling solutions. These will initially be room temperature measurements, but will move to cryogenic temperatures towards the end of the project.
- be driven by curiosity, not afraid to ask challenging questions and able to devise creative solutions.
- have the ability to conduct research independently and take ownership of a project.
- work well individually and with a team, including group members and external collaborators. The candidate will maintain research relationships with national and international partners of the project, and have the opportunity.
- assist in the development of student research skills and supervision of PhD and undergraduate project students.
- participate in the usual activities pursuant to a healthy academic environment, including
- writing and disseminating research in publications and reports,
- developing their own or joint research ideas/proposals based on interest, including identifying potential sources of funding and shaping their own professional network for the next steps of their career,
- presenting at national and international conferences,
- participating and presenting in regular group meetings and departmental seminars,
- engaging in outreach and public engagement activities, and
- performing demonstration duties in undergraduate physics classes, as required.
- This position provides the candidate an opportunity to work at the intersection of device design at the microscale and cutting-edge quantum engineering. Full support and training will be given in any skills the candidate needs to carry out the project effectively, including microfabrication onboarding, lab set up and cryogenics, expanded programming skills and finite element modelling simulations.
Education, Qualifications and Experience
Essential Criteria
- A PhD (or equivalent experience) in physics, materials science, electrical engineering or related subjects; or expected to be awarded a PhD soon.
- Extensive background in a field of semiconductor microfabrication including skills in e.g. photolithography/EBL, wet/dry etching, PVD, SEM.
- Knowledge of experimental optical systems, including fibre-based or free space setups.
- Experience writing and managing peer-reviewed publications.
- Ability to formulate and progress work on their own initiative.
Desirable Criteria
- Exposure to fabrication and measurement of integrated photonic circuits or microcavities is especially desirable.
- Experience running optical experiments in cryogenic environments.
- Experience supervising research students.
- Programming skills for experimental settings (e.g. data acquisition and analysis, device modelling)
- Experience carrying out device simulations in FEM or FDTD software e.g. COMSOL, Lumerical.
- Demonstrated desire to become a well-rounded academic, including a vision for the role beyond the direct project e.g. engagement with the local community, contributing to undergraduate student experience, fostering a positive research culture in the group/institute.
About Heriot-Watt University
At Heriot-Watt we are passionate about our values and look to them to connect our people globally and to help us collaborate and celebrate our success through working together. Our research programmes can deliver real world impact which is achieved through the diversity of our international community and the recognition of creative talent that connects our global team.
Our flourishing community will give you the freedom to challenge and to bring your enterprising mind and to help our partners with solutions that can be applied now and in the future. Join us and Heriot Watt will provide you with a platform to thrive and work in a way that also helps you live your life in balance with well-being and inclusiveness at the heart of our global community.
How to Apply
Please submit via the Heriot-Watt on-line recruitment system (1) Cover letter describing their interest and suitability for the post; (2) Full CV.
Applications must be submitted by midnight on Friday 17th October 2025.
For more information and informal discussions, please contact Dr Christiaan Bekker (c.bekker@hw.ac.uk).
At Heriot Watt we are passionate about our values and look to them to connect our people globally and to help us collaborate and celebrate our success through working together. Our research programmes can deliver real world impact which is achieved through the diversity of our international community and the recognition of creative talent that connects our global team.
Our flourishing community will give you the freedom to challenge and to bring your enterprising mind and to help our partners with solutions that can be applied now and in the future. Join us and Heriot Watt will provide you with a platform to thrive and work in a way that also helps you live your life in balance with well-being and inclusiveness at the heart of our global community.
Heriot-Watt University is committed to securing equality of opportunity in employment and to the creation of an environment in which individuals are selected, trained, promoted, appraised and otherwise treated on the sole basis of their relevant merits and abilities. Equality and diversity are all about maximising potential and creating a culture of inclusion for all.
Heriot-Watt University values diversity across our university community and welcomes applications from all sectors of society, particularly from underrepresented groups. For more information, please see our website https://www.hw.ac.uk/uk/services/equality-diversity.htm and also our award-winning work in Disability Inclusive Science Careers https://disc.hw.ac.uk/
We welcome and will consider flexible working patterns e.g. part-time working and job share options.
Postdoctoral Research Associate in Spin-Optomechanical Systems in Silicon Carbide employer: Heriot-Watt University
Heriot-Watt University is an exceptional employer, offering a vibrant research environment that fosters innovation and collaboration within the Quantum Photonics Laboratory. With generous benefits including 33 days of annual leave and a commitment to employee growth through training and mentorship, we provide a supportive atmosphere where you can thrive both professionally and personally. Our inclusive culture encourages diverse perspectives, making it an ideal place for those seeking meaningful contributions in cutting-edge quantum technologies.
StudySmarter Expert Advice🤫
We think this is how you could land Postdoctoral Research Associate in Spin-Optomechanical Systems in Silicon Carbide
✨Tip Number 1
Network like a pro! Reach out to current or former employees at Heriot-Watt University through LinkedIn or academic forums. A friendly chat can give us insider info on the team and the work culture, plus it shows your genuine interest in the role.
✨Tip Number 2
Prepare for the interview by diving deep into the project details. Familiarise yourself with the latest research in spin-optomechanical systems and think about how your skills align with the goals of the project. We want to see your passion and knowledge shine!
✨Tip Number 3
Showcase your hands-on experience! Be ready to discuss specific projects where you've used semiconductor microfabrication techniques or worked with optical systems. We love hearing about real-world applications of your skills.
✨Tip Number 4
Don’t forget to apply through our website! It’s the best way to ensure your application gets the attention it deserves. Plus, it keeps everything organised on our end, making it easier for us to review your awesome qualifications.
We think you need these skills to ace Postdoctoral Research Associate in Spin-Optomechanical Systems in Silicon Carbide
Some tips for your application 🫡
Craft a Compelling Cover Letter:Your cover letter is your chance to shine! Make sure to express your genuine interest in the Spin-Optomechanical Systems project and highlight how your skills align with the role. Don’t forget to mention any relevant experience that makes you a great fit!
Tailor Your CV:When it comes to your CV, we want to see how you meet the essential criteria listed in the job description. Be specific about your experience in semiconductor microfabrication and optical systems. Tailoring your CV shows us you’ve done your homework!
Show Off Your Research Skills:We’re looking for someone who can take ownership of their project. In your application, make sure to showcase your ability to conduct independent research and any previous experience supervising students. This will help us see your potential as a leader in our team.
Apply Through Our Website:Don’t forget to submit your application through the Heriot-Watt online recruitment system! It’s the easiest way for us to receive your documents and ensures you’re considered for the position. Plus, it keeps everything organised on our end!
How to prepare for a job interview at Heriot-Watt University
✨Know Your Stuff
Make sure you brush up on your knowledge of spin-optomechanical systems and silicon carbide. Familiarise yourself with the latest research in the field, especially any recent publications from the Quantum Photonics Laboratory. This will not only show your genuine interest but also help you engage in meaningful discussions during the interview.
✨Showcase Your Skills
Prepare to discuss your experience with semiconductor microfabrication techniques like photolithography and etching. Be ready to provide specific examples of projects where you've applied these skills, as well as any programming or simulation work you've done. This will demonstrate your hands-on expertise and how it aligns with the role.
✨Ask Thoughtful Questions
Interviews are a two-way street! Prepare some insightful questions about the project, the team dynamics, and future research directions. This shows that you're not just interested in the position but also in contributing to the lab's success and understanding its culture.
✨Be Yourself
While it's important to be professional, don't forget to let your personality shine through. The team is looking for someone who fits well within their collaborative environment, so being authentic can help them see how you'd mesh with their group. Plus, it makes the conversation more enjoyable for everyone!