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School of Electrical and Electronic Engineering is one of the founding Schools of the Nanyang Technological University. Built on a culture of excellence, the School is renowned for its high academic standards and research. With over 3,000 undergraduates students and 2,000 graduate students it is one of the largest EEE schools in the world and ranks 4th in the field of Electrical & Electronic Engineering in the 2025 QS World University Rankings by Subjects.
Today, the School has become one of the world’s largest engineering schools that nurtures competent engineers and researchers. Each year, the School graduates over a thousand students who are ready to take on great ambitions and challenges.
For more details, please view: https://www.ntu.edu.sg/eee
We are looking for a highly motivated and skilled Research Scientist /Research Fellow to join our cutting-edge fiber optics team. The role will focus on developing next-generation high-power fiber beam combiners. The successful candidate will be responsible for developing advanced modeling and simulation (M&S) tools and the establishment of comprehensive diagnostic and characterization tools. This position requires a strong background in optical physics and hands-on experience in both computational modeling and experimental characterization of optical components.
Key Responsibilities:
1. Modelling & Simulation (M&S) Tool Development
Develop and customize simulation templates using Beam Propagation Method (BPM) software (e.g., BeamProp) to model optical behavior in fiber combiners, focusing on critical areas like taper transitions and fusion zones.
Utilize Finite Element Method (FEM) software (e.g., COMSOL) to perform thermal analysis, modeling heat distribution and dissipation in high-power operational conditions.
Define theoretical performance benchmarks for optical characteristics such as insertion loss and beam quality by integrating real-world data, such as empirical beam profiles from high-power laser diodes.
Validate simulation models by calibrating them against established literature and comparing them with empirical data from fabricated components.
Collaborate with the fabrication team to diagnose sub-optimal performance by identifying discrepancies between theoretical and experimental results.
2. Diagnostic Characterisation & Validation
Design, build, and maintain dedicated experimental setups for the characterization of high-power fiber optic components.
Conduct precise measurements of key performance metrics, including insertion loss, beam quality (M²), and thermal performance under high-power loads (> 200 W/port).
Develop and standardize testing procedures to ensure consistent and reliable data collection across multiple samples.
Implement diagnostic methods, such as fiber index profiling and microscopic visual inspection, to analyze post-processing effects on signal fibers.
Provide crucial feedback to the M&S and fabrication teams by supplying accurate characterization data, creating a closed-loop development cycle.
Job Requirements:
PhD qualification degree in Physics, Optical Engineering, Electrical Engineering or related field
At least 4 years of relevant experiences / technical hands-on experience in an optics lab, including the design and construction of test benches and characterization of optical components (e.g., measuring insertion loss, beam quality).
Familiarity with optical and thermal simulation software, and high-power laser systems
Solid theoretical understanding of fiber optics, laser physics, and heat transfer.
Good written and oral communication skills
Proficiency in BPM and COMSOL is highly essential.
Competent in analytical skills with the ability to bridge the gap between theoretical models and experimental results.
Excellent problem-solving abilities and a methodical, data-driven approach to research.
Ability to work collaboratively in a fast-paced environment.
We regret to inform that only shortlisted candidates will be notified.
Hiring Institution: NTU