Showing posts with label photonics. Show all posts
Showing posts with label photonics. Show all posts

Thursday, December 8, 2016

Research center physicist recognized by his peers


By NIKKI FICKEN AMRDEC

http://www.theredstonerocket.com/military_scene/article_ffedf934-bc80-11e6-bf22-2b921fd3b353.html

An Aviation and Missile Research, Development and Engineering Center employee has been named a Fellow of the American Association for the Advancement of Science, a distinction that recognizes his outstanding contributions in scientific research.
Dr. Henry Everitt, an AMRDEC physicist, is among 391 AAAS members elected by their peers to the rank of Fellow this year, one of two researchers employed by the Army. AAAS is the world’s largest multidisciplinary scientific society, with more than 120,000 members, and a leading publisher of cutting-edge research through its science family of journals. The AAAS seeks to “advance science, engineering and innovation throughout the world for the benefit of all people.”
“It is a tremendously humbling honor to be recognized by your peers for the work you do,” Everitt said. “I’m blessed to get paid for doing research, something I so much enjoy doing. My career has been about doing research in a variety of ways, including mentoring outstanding students and researchers and sponsoring top scientists and engineers around the world. Any successes I’ve had derive from their successes.”
He is one of the Army’s three dozen chief scientists, a senior executive “scientific technologist” who has worked for 25 years as a program manager, researcher and adviser on subjects as wide ranging as nanotechnology, photonics, ultrafast spectroscopy of semiconductor physics, quantum information, molecular spectroscopy and terahertz frequency holography and radar. 
“Dr. Everitt has an extensive technical knowledge-base as represented in his numerous journal publications, book chapters, manuscripts and numerous technical reports,” Juanita Harris, AMRDEC Weapons Development and Integration Directorate director, said. “His guidance and strategic direction in the quantum networking activities allows the Army to lay out its strategic path in response to this very critical OSD initiative on quantum research. Dr. Everitt has proven himself time and time again to utilize his technical strengths to provide real world solutions to critical missile-based problems.”
In announcing the honor, AAAS recognized him “for pioneering spectroscopic investigations of wide bandgap semiconductors and ultraviolet plasmonic nanostructures, terahertz holography and nascent federal programs in quantum information, photonic crystals and nanotechnology.”
Because of his pioneering work in these fields, Everitt was previously selected as a Fellow of the Optical Society of America and the American Physical Society. He also holds adjunct faculty positions at several universities including Duke University, Rice University and the University of Alabama in Huntsville where he has taught classes and personally mentored more than 75 undergraduate researchers, graduate students and research scientists.
He and the other new Fellows will be presented with an official certificate and rosette pin on Feb. 18 at the AAAS Fellows forum during the 2017 AAAS annual meeting in Boston. 

“As an Army scientist, my job and the purpose of my research is ultimately about service, service to my colleagues, service to the nation and especially service to the brave men and women in uniform who protect our freedoms,” Everitt said. “Selfless service is one of the Army’s core values, so it means a lot that AAAS recognizes Fellows for their ‘service to society.’ I hope I’ve done that.”

Sunday, March 8, 2015

Laser Marketplace Seminar: Afternoon Highlights




Once the morning sessions had concluded and the pre-lunch industrial laser panel and lunchtime 3D printing presentation were over, I expected the conference room to empty a bit as in previous years; fortunately, that wasn't the case--more than two-thirds of the packed house at the 2015 Lasers & Photonics Marketplace Seminar (http://www.marketplaceseminar.com) on February 9 remained for the afternoon sessions--an indication that all things laser-related are hot.

Global photonics

Beginning the afternoon sessions was Tom Hausken, OSA senior advisor, engineering & applications, who gave an overview of the global market for photonics, which grows about 6% per year--outpacing the 2 to 3% average growth of the US economy. In 2015, OSA Industry Development Associates (OIDA) predicted that the production value of photonics will reach $500 billion dollars, of which less than $100 billion is actual photonics products, and about $200 billion is comprised of displays while the remaining $200 billion is comprised of products enabled by photonics production.

Geographically, Taiwan takes a large share for displays while China is responsible for most of the photovoltaics production (LEDs make up about $10 billion worth of business for China alone). China is gaining confidence in the mergers & acquisitions space while Japan's economy remains flat, says Hausken. Not to mention that Japan has nearly equivalent photonics production at home and offshore. In the US, less than 10% of the photonics companies contribute 90% of the US photonics revenue. Most of the European photonics production is in the industrial space, while Taiwan is slowly seeing a falling share of production.

Hausken concluded with many of the US initiatives for photonics funding, as well as some detail on Europe. It is hoped that these efforts will increase as photonics awareness increases globally. Currently, the US spends about $1.3 billion on photonics funding efforts.

Lasers in China

Peking University professor and VP and secretary general of the Chinese Optical Society Qihuang Gong gave an overview of how funding is structured in China for laser and photonic advances in both public and private markets. Even though China has 20% of the world's population at about 1.3 billion people, Gong says that 200 million of those are poverty stricken and that China has a long way to go in growing the middle class.

Optics-related graduate students comprise roughly 20% of the total graduates in 2000 higher-education institutes, and recent research on quantum information processing, solitons, nanophotonics, nanoscale particle detection, ultrafast light-matter interaction, and OAM communication are indicators of the sophisticated nature of Chinese academia. R&D funding has been growing exponentially in China since 1995, and a host of other slides that could not be shown due to time constraints of the presentation are available on the presentation thumb drives handed out to Seminar attendees.

Easy oil doesn't exist anymore

In his presentation entitled "Photonics in the Oil and Gas Industry", Halliburton fluid ID R&D manager Chris Jones said that even though oil prices had dropped a lot in previous months, they will once again be on the rise (as they have been recently) and that "easy oil doesn't exist anymore". Hence the need for photonics to improve recovery efficiencies for existing and new oil reserves.

An oil industry downturn is actually good news for photonics, says Jones. Many new products are launched when the oil industry is not doing well and recognizes it needs new technology to stay profitable. Among those profit-builders are downhole fiber-optic filter-based and fiber Bragg grating (FBG)-based temperature and pressure sensors that can improve oil well monitoring and serve as a barometer for well health, yielding clues that can increase extraction yields. Jones says that optics can bring a 20% ROI to oil and gas exploration and extraction.

To understand multivariate optical computing, readers should brush up on the recentLaser Focus World article at http://www.laserfocusworld.com/articles/print/volume-50/issue-08/features/photonics-applied-energy-multivariate-optical-computing-enables-accurate-harsh-environment-sensing-for-the-oil-and-gas-industry.html. Jones says that oil and gas monitoring is estimated to be a $2 billion dollar annual business, so photonics companies are wise to explore this space.

And with that, I've concluded my three-part blog on the 2015 Lasers & Photonics Marketplace Seminar. Be sure to attend next year; we've already started gathering data and formulating presentation ideas and speakers for the next big event in 2016. If you have suggestions for topics or speakers, please don't hesitate to contact me at gailo@pennwell.com.

Tuesday, July 29, 2014

SPIE Leaders, Community Speak Out To Support Photonics R&D



Comment period provides opportunity for advocacy of new photonics manufacturing capability
Leaders of SPIE, the international society for optics and photonics, have been among those speaking out for the value of light-based technologies through the National Photonics Initiative, including in response to a request for information on a proposal for new manufacturing institutes. A photonics institute for manufacturing innovation would help ensure community safety, generate new high-value jobs, and drive economic growth, society leaders say.
A request for information on possible new manufacturing institutes focused on light-based technologies has offered a valuable opportunity for the community to speak out on how the development of new photonics-based applications benefit the economy and society, say leaders of SPIE, the international society for optics and photonics.
A comment period closed last week for a U.S. Department of Defense (DoD) Request for Information (RFI) to gather input to use in scoping focus areas for future Institutes for Manufacturing Innovation (IMI).
“We have received very positive comments in recent meetings in Washington, D.C., on the response from the photonics community. Individuals’ comments are very powerful, and taken together become an even stronger voice of advocacy for photonics,” said SPIE CEO Eugene Arthurs. “We are pleased that the National Photonics Initiative (NPI) once again has been able to help focus and amplify the efforts of individuals from all segments of the industry.”
The NPI, a collaborative alliance seeking to raise awareness of photonics and drive U.S. funding and investment in key photonics-driven fields, was launched in the wake of shrinking federal budgets for research, and on the recommendation of a 2012 National Academies’ report on optics and photonics. SPIE and The Optical Society (OSA) are Founding Sponsors, and the American Physical Society (APS), the IEEE Photonics Society, and the Laser Institute of America (LIA) are Sponsors of the coalition.
Arthurs noted that the NPI’s advocacy efforts in the U.S. resemble similar initiatives in other regions of the world that have been highly successful in promoting optics and photonics and resulting in important funding opportunities.
In the European Union, efforts by Photonics21, which represents industry and research groups and not-for-profit societies including SPIE, have helped secure photonics a place among six Key Enabling Technologies that receive priority funding for R&D. Previously, photonics had been one of 37 Technology Platforms, with less favored funding.
China, Japan, Germany, Singapore, and Belgium are among countries that have invested heavily in national photonics technology institutes, centers of excellence, and similar initiatives, and gained leadership positions in targeted markets as a result.
In Taiwan, R&D strategy has helped create annual export levels in photonics of around US$80B, more than US$3,500 per resident.
A photonics IMI would ensure defense technology leadership for the future while generating and securing jobs and innovation to drive economic growth, SPIE leaders said.
“To maintain a competitive edge requires a healthy symbiosis of science and technology with manufacturing,” Arthurs said. “This is vital to sustenance and progress for both. Knowledge diffusion, from research to manufacturing and from manufacturing to research, is crucial for ongoing innovation that results in tangible economic or social outcomes.”
“Photonics is an enabling technology used in communications, computing, healthcare, transportation, energy, and entertainment, and plays a vital part in our security and defense capabilities” said SPIE Vice President Robert Lieberman, who serves on the NPI steering committee. “For example, optical sensors, from UV through IR to terahertz, have myriad uses in the ongoing quest for the security of our communities. Sensors have multiple uses in everyday life, such as diagnosing disease, ensuring food safety, monitoring health, and ensuring safety on our streets and highways.”
Economic benefits of innovation fund more than 70% of R&D in the United States, he said, but “without the economic benefits from manufacturing, this funding withers.”
More than 300 people signed up for a webinar organized by the NPI about how to respond to the RFI, and SPIE submitted a letter emphasizing the economic impact of photonics.
In advance of the RFI, SPIE and other NPI partners presented white papers on a national photonics prototyping and advanced manufacturing facility to the Office of Science and Technology Policy and DoD officials. The NPI has also been active in promoting biophotonics, environmental sensors, and high-power laser technologies among federal policy makers in Washington, D.C.
About SPIE
SPIE is the international society for optics and photonics, a not-for-profit organization founded in 1955 to advance light-based technologies. The Society serves nearly 256,000 constituents from approximately 155 countries, offering conferences, continuing education, books, journals, and a digital library in support of interdisciplinary information exchange, professional networking, and patent precedent. SPIE provided more than $3.2M in support of education and outreach programs in 2013.
SOURCE: SPIE

Wednesday, February 5, 2014

OSA-National Conference on Recent Trends in Photonics


03/12/2014 - 03/14/2014
Ravishankar Shukla Auditorium,Raipur RAIPUR, India
http://www.prsu.ac.in/
Contact: Prof.Sanjay Tiwari
Email: ncrtp2014@gmail.com, drsanjaytiwari@gmail.com
Phone: 91-9424225771
Venue: Ravishankar Shukla Auditorium,Raipur
The field of Photonics has continued to evolve vigorously during the last decades and after its advancements in the areas of lasers, fiber optic communications and fiber optic sensors, new and important areas are picking up in the form of Nano-Photonics, Bio-Photonics etc. In view of this, the School of Studies in Electronics & Photonics is organizing a 3 day National Conference on Recent Trends in Photonics (NCRTP-2014). The main objective of NCRTP-2014 is to give an introduction to the above topics to motivate students who are planning to work in these areas.Researchers are encouraged to submit papers covering original research related to the topics of interest of the conference including: • Solid State Lighting/Green Photonics/Solar Cells • Plasmonics/ Nanophotonics/ Metamaterials • Biophotonics /Biomedical • Nonlinear Optics/Photonic Crystal Structures • Optical Fiber Communication/ Networking • Optical Fiber Devices/Sensors • Lasers / Ultrafast Optics • Photonics Modelling • Diffractive Optics/Holographic Storage • RF Photonics / Tera Hertz Imaging
Sponsor: University Grants Commission New Delhi India The United States – India Educational Foundation (USIEF) UK India Education and Research Initiative (UKIERI) Vijnana Bharati India