Français

92 new premium members have joined SPIE

742
2025-08-01 14:19:19
Voir la traduction

SPIE, the international society for optics and photonics, has welcomed 92 new Senior Members from 19 countries. SPIE Senior Members are Society Members of distinction who are recognized for their professional experience and technical accomplishments, their active involvement with the optics community and with SPIE, and for significant performance that sets them apart from their peers.

The newly recognized Senior Members — drawn from across academia, industry, and government — work in a variety of optics-and-photonics-focused areas that include light-matter interactions; biomedical imaging, diagnostics, and monitoring; EUV imaging and architecture; remote sensing; optoelectronics; precision agriculture; optical design and engineering; photonic crystals; optofluidics; nanophotonics, nano-optics, and photonic materials; smart sensing; electromagnetics; entrepreneurship; astrophysics; and opto-mechanical system analysis and design.

 

 

New SPIE Senior Members: Fenglin Peng, Kayn Forbes, and Vicky Philipsen


With the 2025 cohort of SPIE Senior Members, the Society welcomes a strong representation of accomplished constituents from across the wider optics and photonics community.
This year’s new inductees include Jeff Hecht, an optics historian and science-technology writer whose areas of expertise include lasers, fiber optics, and electronics; Meta’s Fenglin Peng, recognized for advancements in virtual reality and novel display technology; Vicky Philipsen of imec, a key contributor to advanced lithography and imaging, and an active participant in the SPIE microlithography community; and the University of East Anglia’s Kayn Forbes, recognized for his contributions to structured-light interactions.

Others include Lawrence Livermore National Laboratory’s Diana Chen, whose work focuses on high-power laser technology, adaptive optics, and bio-imaging optical systems; Michael Brodsky, of the US Army Research Laboratory, with a particular focus on quantum internet; Ulrike Fuchs, of asphericon GmbH, whose work advances innovations in aspheric and freeform surfaces; and Bruce Bigelow, of the Giant Magellan Telescope Organization, with achievements in opto-mechanical design as well as his contributions to the optics community as an external reviewer and an SPIE proceedings author.

“I’m delighted to welcome our new Senior Members to the Society,” said 2025 Senior Member Committee Chair and Clemson University Professor and Special Assistant to the Dean Oliver J. Myers.

“These engineers and researchers, systems developers, and science communicators, are key to our optics and photonics community. They contribute their technical expertise, as well as offering professional and personal support to their colleagues in the wider community. As the Senior Member Committee Chair, I’m excited by the wealth of experience this group brings to our community, across industry, academia, and government.”

Source: optics.org

Recommandations associées
  • A New Method for Controlling Light Polarization Using Liquid Crystal to Create Holograms

    Researchers have made significant breakthroughs in controlling optical polarization, which is a key characteristic of various applications such as augmented reality, data storage, and encryption.This new method was developed by a group of scientists using liquid crystals to create holograms, which can manipulate the polarization of light at different points. This represents a significant advanceme...

    2024-03-12
    Voir la traduction
  • Revealing the essence of optical vortices: a step towards understanding the interaction between light and matter

    In a groundbreaking scientific study published in Volume 13 of the Scientific Report, researchers reported on the results of Young's double slit interference experiment using oscillating vortex radiation under a photon counting system. The experiment involves using a spiral oscillator to emit second harmonic radiation in the ultraviolet range. Using an ultra narrow bandpass filter in the low curre...

    2023-12-29
    Voir la traduction
  • A US research team has developed a new type of photonic memory computing device

    Recently, a research team from the University of California, Santa Barbara has successfully developed a new type of photonic memory computing device that integrates non reciprocal magneto-optical technology. This device achieves high-speed, high-energy efficiency, and ultra-high durability photon computing by utilizing the non reciprocal phase shift phenomenon. The research findings, titled "Integ...

    2024-10-24
    Voir la traduction
  • Due to research conducted by scientists from South Korea and the UK, the power of lasers will increase by one million times

    Due to research conducted by scientists from South Korea and the UK, the power of lasers will be able to increase by one million times. The researchers plan to apply this improvement for scientific purposes.The study was led by representatives of Strathclyde University and the Korea Institute UNIST and GIST. Behind the scenes footage of their work in the journal Nature Photonics. It has been prove...

    2023-11-27
    Voir la traduction
  • Chinese researchers have developed for the first time a room temperature HoYLF thin film laser

    In a study published in Optics Express, the research team led by Professor Fu Yuxi of the Xi'an Institute of Optics and Precision Mechanics (XIOPM) of the Chinese Academy of Sciences developed the room temperature holmium doped lithium yttrium fluoride (Ho: YLF) composite thin slice laser for the first time, which can achieve high efficiency and high-quality CW laser output.Laser devices operating...

    02-21
    Voir la traduction