Personal profile
Biography
A/Prof Madden currently leads research on the hybridisation of Chalcogenide, Tellurite, silicon nitride, and germanosilicate technologies for multifunctional integrated optical devices for sensing, communications, metrology and chip based ultrafast laser systems. He also contributes to research on the applications for and system design of high power ultrafast laser systems for nonlinear optics, multiphoton microscopy, and materials processing from the DUV to MIR. His research career spans the period from 1984 to the present in start-ups and multi-nationals before joining the Laser physics Centre in 2004, covering a diverse range of areas including Liquid Crystals, seven different materials systems for planar devices, all fibre devices, Hybrid integration, Bragg gratings and devices, planar tunable lasers, optical transmission systems and all optical networking, non-linear effects in SOAs and planar waveguide devices, advanced semiconductor processing techniques, high power laser processing systems, ultra-high performance optical metrology system development. The spectrum of work has covered fundamental science through to putting new high technology products into volume production and out onto the market.
A/Prof Madden also runs the new Precision Optics ANFF Optofab node currently being established at ANU which will initially offer high performance custom optical coatings on substates up to 60cm by IAD E-beam of metals, metal oxides/nitrides/fluorides, 45cm by Ion Beam Sputtering of metal oxides/nitrides, and a small resarch IBS chamber for experimental processes with exotic materials such as rare earth doped glasses for photonics applciations on 100mm wafers/substrates. Once this is set up, we plan to offer custom diamond turned optics an photonic chip devices based around a toolkit for multi-material hybrid integration of passive, active, nonlinear, and amplifying media.
A/Prof Madden is also involved on work on ultrafast laser ablation for suface processing, cleaning, and film deposition. The highest profile of these activities is the ARC Linkage Project with Transport for New South Wales on ultrafast laser restoration of the Sydney Harbour Bridge.
Qualifications
BSc(Eng) PhD DIC
Research Interests
Fibre and Integrated optics, Planar waveguides, optical transmission systems, optical switching, MIR light generation and processing with integrated optics, Semiconductor processing methodology, Liquid crystals, optical polymers, Tellurite and Chalcogenide glasses and devices, Ultrafast laser system development and applciations, Laser processing, Optical metrology system development, Optical coatings for thin film filters/mirrors etc, diamond turned optics
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Collaborations and top research areas from the last five years
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Femtosecond laser ablation for the conservation of Galician granites
Brand, J., Lopez, A. J., Moreno-Madariaga, A., Ramil, A., Wain, A., Rode, A. V., Madden, S. & Rapp, L., Jul 2025, In: Bulletin of Engineering Geology and the Environment. 84, 7, 14 p., 383.Research output: Contribution to journal › Article › peer-review
Open Access -
Femtosecond laser processing for blast-hole analysis: Laser removal of slurry and effect on rocks
Brand, J., Maximova, K., Madden, S., Rode, A. V., Mihankhah, E., Zigman, J., Hill, A. J. & Rapp, L., Nov 2025, In: Optics and Laser Technology. 189, 13 p., 113166.Research output: Contribution to journal › Article › peer-review
Open Access -
Finite Element Modeling of Residual Stress Formation during Nanosecond Laser Ablation of Stainless Steel
Tsumura, Y., Paradowska, A., Rode, A. V., Madden, S., Rapp, L., Mohan, M., Wain, A. & Proust, G., 16 Jul 2025, In: Advanced Engineering Materials. 27, 16, 16 p.Research output: Contribution to journal › Article › peer-review
Open Access1 Citation (Scopus) -
Asgard/NOTT: L-band nulling interferometry at the VLTI. II. Warm optical design and injection system
Garreau, G., Bigioli, A., Laugier, R., Raskin, G., Morren, J., Berger, J. P., Dandumont, C., Goldsmith, H. D. K., Gross, S., Ireland, M., Labadie, L., Loicq, J., Madden, S., Martin, G., Martinod, M. A., Mazzoli, A., Sanny, A., Shao, H., Yan, K. & Defrere, D., 1 Jan 2024, In: Journal of Astronomical Telescopes, Instruments, and Systems. 10, 1, 21 p., 015002.Research output: Contribution to journal › Article › peer-review
Open Access11 Citations (Scopus) -
High Performance In-Line Er-Doped Waveguide Amplifiers Using Room Temperature Sputtered Er:TeO2 Thin Film
Zhong, Y., Yan, K. & Madden, S., 2024, 2024 Conference on Lasers and Electro-Optics, CLEO 2024. Institute of Electrical and Electronics Engineers Inc., (2024 Conference on Lasers and Electro-Optics, CLEO 2024).Research output: Chapter in Book/Report/Conference proceeding › Conference Paper › peer-review
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Mid-infrared spatial filtering to enable the search for extrasolar life
Ireland, M. (PI), Defrare, D. (CoI), Madden, S. (CoI) & Rapp, L. (CoI)
7/04/25 → 6/04/28
Project: Research
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A miniaturised laser manipulator for ultra-precise and pain-free dentistry
Rapp, L. (PI), Viet Dao, D. (PI), Dau, V. (CoI), Madden, S. (CoI), Rode, A. (CoI), Spallek, H. (CoI), Walsh, L. (CoI) & Woodfield, P. (CoI)
29/05/24 → 29/05/27
Project: Research
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Integrated microwave photonic filter for wideband RF receiver
Madden, S. (PI)
1/03/24 → 28/02/27
Project: Research
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NCRIS 2023-2028 Funding Agreement - Australian National Fabrication Facility Limited (ANFFL)
Tan, H. (PI) & Madden, S. (CoI)
16/06/23 → 31/12/28
Project: Research
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Investigation of the femtosecond laser ablation of various dental materials with near InfraRed (1029 nm) laser wavelength.
Rapp, L. (PI) & Madden, S. (CoI)
12/12/22 → 11/12/27
Project: Research