Michael Withford

About Michael Withford

Michael Withford, With an exceptional h-index of 55 and a recent h-index of 35 (since 2020), a distinguished researcher at Macquarie University, specializes in the field of Lasers, Laser Processing, Integrated Photonics, Fibre Sensors.

His recent articles reflect a diverse array of research interests and contributions to the field:

Low-loss ultrafast laser inscribed photonics for space-division-multiplexed optical networks

Improved integration density with ultra-fast laser written fiber fan-in/fan-out for broadband coupling to silicon photonics

Low Bend Loss, High Index, Composite Morphology Ultra-fast Laser Written Waveguides for Photonic Integrated Circuits

3D Astrophotonic Tricoupler Device for Exoplanet Detection

Machine-learning approach for optimal self-calibration and fringe tracking in photonic nulling interferometry

Aluminosilicate glass

Femtosecond laser-written waveguides and couplers for integrated mid-infrared photonic devices

Towards the development of the self-calibrating nulling interferometry beam combiner for the VLTI instrument ASGARD to detect exoplanets

Michael Withford Information

University

Position

MQ Photonics Research Centre

Citations(all)

9905

Citations(since 2020)

3904

Cited By

7609

hIndex(all)

55

hIndex(since 2020)

35

i10Index(all)

165

i10Index(since 2020)

102

Email

University Profile Page

Google Scholar

Michael Withford Skills & Research Interests

Lasers

Laser Processing

Integrated Photonics

Fibre Sensors

Top articles of Michael Withford

Low-loss ultrafast laser inscribed photonics for space-division-multiplexed optical networks

2024/3/13

Improved integration density with ultra-fast laser written fiber fan-in/fan-out for broadband coupling to silicon photonics

2024/3/11

Low Bend Loss, High Index, Composite Morphology Ultra-fast Laser Written Waveguides for Photonic Integrated Circuits

arXiv preprint arXiv:2401.03382

2024/1/7

3D Astrophotonic Tricoupler Device for Exoplanet Detection

2023/10/9

Machine-learning approach for optimal self-calibration and fringe tracking in photonic nulling interferometry

Journal of Astronomical Telescopes, Instruments, and Systems

2023/10/1

Aluminosilicate glass

2023/8/17

Femtosecond laser-written waveguides and couplers for integrated mid-infrared photonic devices

2023/6/26

Towards the development of the self-calibrating nulling interferometry beam combiner for the VLTI instrument ASGARD to detect exoplanets

2023/6/26

Ultrafast Laser Inscription of Achromatic Phase Shifters

2023/6/26

'Designer Glasses' for Ultrafast Laser-Inscribed Low-Loss Optical Waveguides

2023/6/26

Randomly coupled 19-core multi-core fiber with standard cladding diameter

2023/3/5

Composite Morphology Laser Written 3D Waveguides with Reduced Bend Loss

2023/3/5

Development of the four-telescope photonic nuller of Hi-5 for the characterization of exoplanets in the mid-IR

2022/8/26

Achromatic nulling interferometry and fringe tracking with 3D-photonic tricouplers with GLINT

2022/8/26

Development of the 4-telescope photonic nuller of Hi-5 for the characterization of exoplanets in the mid-IR

Proceedings of SPIE: The International Society for Optical Engineering

2022/8/26

Optimal self-calibration and fringe tracking in photonic nulling interferometers using machine learning

2022/8/26

Femtosecond laser-inscribed mid-infrared fiber Bragg gratings with enhanced thermal stability

2022/7/24

Luyi Xu
Luyi Xu

H-Index: 7

Simon Gross
Simon Gross

H-Index: 24

Michael Withford
Michael Withford

H-Index: 33

Quantitative morphology of femtosecond laser-written point-by-point optical fiber Bragg gratings

Optics Letters

2022/2/1

The Australian National Fabrication Facility: Micro/nanotechnologies from Concept to Translation to End Users.

Advanced Functional Materials

2022/1/14

Designer glasses—Future of photonic device platforms

Advanced Functional Materials

2022/1

Simon Gross
Simon Gross

H-Index: 24

Michael Withford
Michael Withford

H-Index: 33

See List of Professors in Michael Withford University(Macquarie University)

Co-Authors

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