At a Glance
- Tasks: Conduct groundbreaking research in quantum optics and two-dimensional materials.
- Company: Join the renowned Quantum Photonics Laboratory at Heriot-Watt University.
- Benefits: Enjoy a competitive salary, 33 days holiday, and flexible working options.
- Other info: Dynamic, interdisciplinary environment with excellent career growth opportunities.
- Why this job: Make a real impact in cutting-edge quantum research and collaborate with top experts.
- Qualifications: PhD or near completion in Physics or related field; strong background in optics required.
The predicted salary is between 37694 - 47389 £ per year.
The Quantum Photonics Laboratory (QPL) at Heriot-Watt University is an internationally recognised research group working at the interface of quantum photonics, condensed matter physics, and two-dimensional materials. The group comprises approximately 25 researchers, including academic staff, postdoctoral researchers, and PhD students, and conducts research spanning quantum light sources, strongly correlated quantum materials, van der Waals heterostructures, moiré materials, and spin-based quantum technologies.
The laboratory operates state-of-the-art facilities for cryogenic optical spectroscopy, quantum optics, nanofabrication, and automated assembly of complex two-dimensional material heterostructures. Researchers within the group collaborate extensively with leading academic and industrial partners internationally, providing an exciting and highly interdisciplinary research environment.
The Quantum Photonics Laboratory seeks a highly motivated experimental physicist to undertake research on the optical and quantum-optical properties of atomically thin semiconductors and van der Waals heterostructures. The successful candidate will work within a multidisciplinary project exploring light-matter interactions in two-dimensional materials, with particular emphasis on excitons, spin-valley physics, nonlinear optical phenomena, quantum light generation, and emerging quantum photonic functionalities.
The research will combine advanced optical spectroscopy techniques with the fabrication and characterisation of layered semiconductor heterostructures. A major focus of the project will be the development and application of low-temperature optical spectroscopy techniques—including photoluminescence, differential reflectance, Raman spectroscopy, magneto-optical spectroscopy, time-resolved spectroscopy, second-harmonic generation, and quantum optical measurements—to investigate excitonic, spin-valley, and many-body phenomena in engineered van der Waals, twisted, and moiré material systems. The project will also explore nonlinear optical processes and quantum light generation in layered materials, including spontaneous parametric down-conversion and the characterisation of entangled photon states. In addition, the project will investigate how layered materials can be integrated with nanophotonic and metasurface platforms to realise enhanced and programmable nonlinear optical functionalities.
The post holder will have access to a wide range of experimental facilities within the Quantum Photonics Laboratory, including cryogenic spectroscopy platforms, high magnetic field systems, single-photon detection technologies, advanced nanofabrication facilities, and automated systems for the assembly of two-dimensional material heterostructures. The successful candidate will be expected to take a leading role in designing experiments, analysing data, publishing results in high-impact journals, and contributing to the supervision of junior researchers.
Key Duties & Responsibilities- Conduct world-leading experimental research on the optical and quantum-optical properties of two-dimensional semiconductors and van der Waals heterostructures.
- Design, build, and optimise advanced optical spectroscopy experiments, including low-temperature and magnetic-field-dependent measurements.
- Perform linear and nonlinear optical characterisation of semiconductor heterostructures using techniques such as photoluminescence, differential reflectance, Raman spectroscopy, second-harmonic generation, and magneto-optical spectroscopy.
- Investigate excitonic, spin-valley, many-body, and quantum optical phenomena in atomically thin materials.
- Develop and perform experiments on quantum light generation in layered materials, including spontaneous parametric down-conversion (SPDC).
- Characterise entangled photon states using coincidence measurements, Bell-state analysis, quantum state tomography, and related quantum-optical techniques.
- Participate in the fabrication and characterisation of van der Waals heterostructures.
- Analyse experimental data and develop physical models to interpret observations.
- Carry out the research project to a high scientific standard and meet agreed milestones and deliverables.
- Maintain accurate laboratory records and ensure data are stored according to agreed data-management procedures.
- Report research progress regularly to supervisors and project collaborators.
- Work collaboratively within the Quantum Photonics Laboratory and with national and international collaborators.
- Assist in the supervision and mentoring of PhD students, MSc students, and undergraduate project students.
- Contribute to the maintenance and development of shared experimental facilities.
- Participate actively in laboratory meetings, collaborative projects, and knowledge exchange activities.
- Publish research findings in leading peer-reviewed journals.
- Present results at international conferences and workshops.
- Contribute to future research proposals and collaborative funding applications.
- Engage in outreach and public-engagement activities where appropriate.
- A first-class or upper-second-class degree and a PhD (or near completion of a PhD) in Physics, Materials Science, Engineering, or a closely related discipline.
- Strong background in condensed matter physics, semiconductor physics, optics, or quantum optics.
- Demonstrated experience in optical spectroscopy of semiconductor or quantum material systems.
- Demonstrated experience with several of the following: Low-temperature optical spectroscopy, Magneto-optical spectroscopy, Time-resolved optical spectroscopy, Nonlinear optical spectroscopy, Quantum optical measurements, Single-photon detection and photon-correlation measurements.
- Experience designing, assembling, operating, and troubleshooting advanced optical experiments.
- Evidence of scientific productivity through publications in peer-reviewed journals appropriate to career stage.
- Ability to analyse and interpret complex experimental datasets.
- Strong written and verbal communication skills.
- Ability to work independently while contributing effectively within a collaborative research team.
- Experience presenting scientific results at conferences, workshops, or seminars.
- Experience with exciton dynamics, spin-valley physics, strongly correlated phenomena, or many-body effects in semiconductor systems.
- Experience with quantum light sources, spontaneous parametric down‑conversion, entangled‑photon generation, or quantum-state characterisation.
- Experience with superconducting single-photon detectors, time‑correlated single-photon counting, photon‑correlation measurements, or Bell‑state analysis.
- Experience with cryogenic instrumentation and low‑temperature measurements.
- Experience with Python, MATLAB, or similar scientific programming environments.
- Experience supervising or mentoring students.
- Experience contributing to grant proposals or collaborative research projects.
- Evidence of ability to work across disciplinary boundaries spanning optics, quantum photonics, materials science, and condensed matter physics.
Flexible working patterns, such as part-time working and job share options, will be considered. 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.
Research Associate in Quantum Optics and Optical Spectroscopy of Two-Dimensional Materials employer: Heriot-Watt University Malaysia
Heriot-Watt University offers an exceptional work environment for the Research Associate in Quantum Optics and Optical Spectroscopy of Two-Dimensional Materials, fostering a culture of collaboration and innovation within its internationally recognised Quantum Photonics Laboratory. Employees benefit from access to state-of-the-art facilities, generous holiday entitlement, and opportunities for professional growth through mentorship and interdisciplinary research projects, all while contributing to groundbreaking advancements in quantum technologies.
Contact Details:
Heriot-Watt University Malaysia Recruitment Team
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We think this is how you could land Research Associate in Quantum Optics and Optical Spectroscopy of Two-Dimensional Materials
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We think you need these skills to ace Research Associate in Quantum Optics and Optical Spectroscopy of Two-Dimensional Materials
Some tips for your application 🫡
Highlight Your Research Experience:When applying for a full-time role in scientific research, make sure to emphasise your research experience prominently in your CV. Share specific projects you’ve worked on, the methodologies you used, and any significant findings. If you’ve published papers or presented at conferences, definitely include that too – it shows you’re on it in the academic world!
Tailor Your Cover Letter to the Research Area:Your cover letter should reflect your passion for the specific area of research at Heriot-Watt University Malaysia. Mention relevant experiences that align with the organisation’s goals or projects. This shows that you’ve done your homework and are genuinely interested in the position – plus, it helps us see how you’d fit into the team dynamics.
Showcase Your Data Analysis Skills:In scientific research, data analysis skills are a big deal! Make sure to detail any relevant analytical tools or software you’re familiar with, like R, Python, or statistical packages. Employers are keen to know you can handle the data-heavy elements of the role, so add specific examples where you’ve used these skills effectively.
Discuss Your Future Research Goals:In your motivation section, it’s a great idea to talk about your future research goals and how they align with the work being done at Heriot-Watt University Malaysia. This shows that you’re not just looking for any job, but rather a chance to contribute meaningfully to the field. We love to see applicants who are forward-thinking and enthusiastic about their research journey!
How to prepare for a job interview at Heriot-Watt University Malaysia
✨Showcase Your Research Skills
In scientific research, it’s crucial to demonstrate your ability to design and conduct experiments. Come armed with examples of past projects where you've developed hypotheses, collected data, and analysed results. Be ready to discuss any specific methodologies or tools you’ve used, like PCR techniques or statistical software.
✨Prepare for Technical Questions
Expect some technical questions specific to your field. Make sure you're up to speed with recent advancements in scientific research related to the role at Heriot-Watt University Malaysia. Brush up on concepts relevant to their projects and be prepared to discuss how you would approach a specific research problem or challenge they might face.
✨Know Your Publications
If you've authored or co-authored any papers, be prepared to discuss them! Highlighting your contributions to published research can really set you apart. It shows not only your expertise but also your ability to communicate complex ideas clearly, which is key in scientific research roles.
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In full-time roles, collaboration is often at the heart of scientific research. Prepare examples that show how you've successfully worked in teams, dealt with conflicts, or contributed to group projects. We want to know how you can work effectively with the team at Heriot-Watt University Malaysia to drive research projects forward.