Popular on Rezul
- Wzzph Deploys 5-Million-TPS Trading Engine with Hot-Cold Wallet Architecture Serving 500,000 Active Users Across Latin America - 163
- Phoenix Court-Appointed Realtor Releases Holiday Guidance for Divorce & Probate Home Sales - 162
- Frost Locker: New Research Reveals Mild Cold—Not Extreme Cold—Delivers Real Health Benefits of Cold Therapy - 161
- Faith-Driven Books Empower Professionals to Build Businesses Rooted in Purpose and Integrity - 157
- Divine Punk Announces Happy Christmas, a Holiday Soundscape by Rebecca Noelle - 154
- Spencer Buys Houses Local Home Buying Service Focused on Speed, Fairness, and Simplicity - 144
- Bookmakers Review Releases 2028 Democratic Nominee Betting Odds: Newsom Leads Early Field - 143
- CCHR Exposes Conflicted Psychiatrists Behind Teen Antidepressant Surge - 129
- Heads on Beds- Virtual Estate Agency- Flat-Fee Pricing- Client Virtual Office- Multiligual Platform - 122
- ZapperBox NextGen TV Gateway Receiver Now Testing Support For Secure Whole-Home Content Distribution - 115
Similar on Rezul
- Stratum Nutrition's OVOLUX™ Named 2025 "Collagen Ingredient of the Year" by Beauty Innovation Awards
- CCHR: Study Finds Involuntary Commitment Fails to Prevent Suicide, Raises Risk
- CCHR Supports Call to End Coercive Psychiatry at World Mental Health Congress
- Qvarz LLC Expands Global Reach with High-Precision Quartz Cuvettes and Optical Components
- Frost Locker: New Research Reveals Mild Cold—Not Extreme Cold—Delivers Real Health Benefits of Cold Therapy
- Launch of Professional Private Autopsy Services to Support Families, Professionals, and Researchers
- Mysterious Interstellar Object 3I/ATLAS Appears to Pause Near Mars, Exhibiting Periodic Light Pulses
- Postmortem Pathology Delivers Expert Private Autopsy Services with Compassion and Precision
- CCHR: Misinformation Clouds Debate on Psychiatric Drug Toxicology Transparency
- Mensa Foundation's New Science Program Encourages Hands-On Discovery
Massively parallel implementation of nonlinear functions using an optical processor
Rezul News/10719743
LOS ANGELES - Rezul -- Researchers at the University of California, Los Angeles (UCLA) have developed an optical computing framework that performs large-scale nonlinear computations using linear materials. Reported in eLight, a journal of the Springer Open, the study demonstrates that diffractive optical processors—thin, passive material structures composed of phase-only layers—can compute numerous nonlinear functions simultaneously, executed rapidly at extreme parallelism and spatial density, bound by the diffraction limit of light.
Nonlinear operations underpin nearly all modern information-processing tasks, from machine learning and pattern recognition to general-purpose computing. Yet, implementing such operations optically has remained a challenge, as most nonlinear optical effects are weak, power-hungry, or slow. The UCLA team demonstrated universal nonlinear function approximation using linear optical materials by encoding input variables of nonlinear functions into the phase of an optical wavefront and then processing them through an optimized, static diffractive optical architecture made entirely of linear materials. Each diffraction-limited output pixel corresponds to a unique nonlinear function, enabling extreme parallelism within a compact, passive optical system.
More on Rezul News
UCLA researchers established theoretical and empirical proofs that these diffractive processors act as universal nonlinear function approximators—capable of realizing any arbitrary set of bandlimited nonlinear functions, including multi-variate and complex-valued functions that are all-optically cascadable. They also reported the successful approximation of typical nonlinear activation functions commonly used in digital neural networks, including sigmoid, tanh, ReLU (rectified linear unit), and softplus functions.
The researchers further demonstrated, through numerical simulations, the parallel computation of one million distinct nonlinear functions, accurately executed at wavelength-scale spatial density at the output plane of an optimized, static diffractive optical processor. They also reported an experimental validation of their architecture using a compact optical setup comprising a spatial light modulator and an image sensor, which successfully learned and executed tens of distinct nonlinear functions simultaneously.
More on Rezul News
The study's framework is scalable to much larger systems by leveraging high-end image sensors with hundreds of megapixels to potentially compute hundreds of millions of nonlinear functions – all in parallel. Such a capability could advance ultrafast analog computing, neuromorphic photonics, and high-throughput optical signal processing—achieved without nonlinear optical materials or electronic post-processing.
The authors of this work are Dr. Md Sadman Sakib Rahman, Yuhang Li, Xilin Yang, Dr. Shiqi Chen, and Professor Aydogan Ozcan, all at the UCLA Samueli School of Engineering. This research was supported by the US Department of Energy Office of Basic Energy Sciences, Materials Sciences and Engineering Division. Dr. Ozcan is also an Associate Director of the California NanoSystems Institute (CNSI).
Link: https://elight.springeropen.com/articles/10.1186/s43593-025-00113-w
Nonlinear operations underpin nearly all modern information-processing tasks, from machine learning and pattern recognition to general-purpose computing. Yet, implementing such operations optically has remained a challenge, as most nonlinear optical effects are weak, power-hungry, or slow. The UCLA team demonstrated universal nonlinear function approximation using linear optical materials by encoding input variables of nonlinear functions into the phase of an optical wavefront and then processing them through an optimized, static diffractive optical architecture made entirely of linear materials. Each diffraction-limited output pixel corresponds to a unique nonlinear function, enabling extreme parallelism within a compact, passive optical system.
More on Rezul News
- Beyond the Closing: Trang Hooser Redefines Client Service with Luxury Appreciation Dinner
- Boynton Beach Real Estate – BOYNTONREALTY.com Ownership – Cary M. Nagdeman, Broker Owner
- Bent Danholm Releases New Video Breaking Down the Rising Debate Over 50-Year Mortgages
- New Smile Now Introduces RAYFace 3D Scanner to Advance Digital Surgery
- Ali Alijanian, DDS Featured in The Profitable Dentist Magazine
UCLA researchers established theoretical and empirical proofs that these diffractive processors act as universal nonlinear function approximators—capable of realizing any arbitrary set of bandlimited nonlinear functions, including multi-variate and complex-valued functions that are all-optically cascadable. They also reported the successful approximation of typical nonlinear activation functions commonly used in digital neural networks, including sigmoid, tanh, ReLU (rectified linear unit), and softplus functions.
The researchers further demonstrated, through numerical simulations, the parallel computation of one million distinct nonlinear functions, accurately executed at wavelength-scale spatial density at the output plane of an optimized, static diffractive optical processor. They also reported an experimental validation of their architecture using a compact optical setup comprising a spatial light modulator and an image sensor, which successfully learned and executed tens of distinct nonlinear functions simultaneously.
More on Rezul News
- Real Estate Sales in Brevard County, FL: A Dynamic Market Overview
- "Meet the Eatmons" Offer Financial Advice ahead of the Holidays
- CCHR: Study Finds Involuntary Commitment Fails to Prevent Suicide, Raises Risk
- Slotozilla's Q3 2025: SBC Lisbon Outcomes and Partnership Expansion
- iROOMit Redefines Modern Renting with Its Innovative Roommate Matching Service
The study's framework is scalable to much larger systems by leveraging high-end image sensors with hundreds of megapixels to potentially compute hundreds of millions of nonlinear functions – all in parallel. Such a capability could advance ultrafast analog computing, neuromorphic photonics, and high-throughput optical signal processing—achieved without nonlinear optical materials or electronic post-processing.
The authors of this work are Dr. Md Sadman Sakib Rahman, Yuhang Li, Xilin Yang, Dr. Shiqi Chen, and Professor Aydogan Ozcan, all at the UCLA Samueli School of Engineering. This research was supported by the US Department of Energy Office of Basic Energy Sciences, Materials Sciences and Engineering Division. Dr. Ozcan is also an Associate Director of the California NanoSystems Institute (CNSI).
Link: https://elight.springeropen.com/articles/10.1186/s43593-025-00113-w
Source: ucla ita
0 Comments
Latest on Rezul News
- Celebrate the Holidays with 10% Off Interior Painting for Boulder Homes
- Fulton County & Grow Your World Amplify Atlanta Youth Through the Youth Audio Collective
- 2026 Oscars Betting Odds: One Battle After Another Favored for Best Picture
- Allen Field Co., Inc. Components Selected for Esko ArtiosCAD 3D Component Library
- PulteGroup expands Northeast Florida presence with new community in Jacksonville, Terrapin Creek
- Thirteen Reasons Why Gyminny Kids Is San Diego's Best Gymnastics Gym
- Heritage At Manalapan - A New Luxury Single Family Home Community Coming Late 2025
- Denver Apartment Finders Revamps 'Start Your Free Search' Page for a Smoother Search Experience
- The Lashe® Announces Exclusive November Savings for Lash and Beauty Professionals
- Corcoran DeRonja Real Estate Welcomes Siobhán Simões to Its Growing Team
- November is Lung Cancer Awareness Month: Screening Saves Aims to Increase Access to Lung Screenings in NC
- Valeo Health Leads a New Era of Longevity and Preventive Health in the UAE
- Torch Entertainment Presents The Frozen Zoo
- Sweet Memories Vintage Tees Debuts Historic ORCA™ Beverage Nostalgic Soda Collection
- UK Financial Ltd Celebrates Global Recognition as MayaCat (MCAT) Evolves Into SMCAT — The World's First Meme Coin Under ERC-3643 Compliance
- U.S. Military to Benefit from Drone Tech Agreement with NovaSpark Energy, Plus Longer NASA Space Missions via Solar Power Leader: Ascent Solar $ASTI
- $76 Million in Gold & Silver Holdings and Expanding Production — Pioneering the Future of Gold: Asia Broadband Inc. (Stock Symbol: AABB) is Surging
- Wohler announces three SRT monitoring enhancements for its iVAM2-MPEG monitor and the addition of front panel PID selection of A/V/subtitle streams
- Schemawriter.ai launches WordPress plugin as industry leaders confirm - schema markup is critical
- 20 Million Financing to Accelerate Growth and Advance Digital Asset Strategy Secured for Super League (N A S D A Q: SLE)