#opticalcomputing 検索結果

Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC. Great conversations, great community — we’re excited for what’s next. #HPC #OpticalComputing

LightSolverCo's tweet image. Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC.

Great conversations, great community — we’re excited for what’s next.

#HPC #OpticalComputing
LightSolverCo's tweet image. Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC.

Great conversations, great community — we’re excited for what’s next.

#HPC #OpticalComputing
LightSolverCo's tweet image. Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC.

Great conversations, great community — we’re excited for what’s next.

#HPC #OpticalComputing

LightSolver is heading to #SC25! Meet our CEO Dr. Ruti Ben-Shlomi at booth #5415 to learn how our Laser Processing Unit (LPU) physically models and solves partial differential equations (PDEs) with light, at nanosecond speeds. #OpticalComputing #HPC #LightSolver @Supercomputing

LightSolverCo's tweet image. LightSolver is heading to #SC25!

Meet our CEO Dr. Ruti Ben-Shlomi at booth #5415 to learn how our Laser Processing Unit (LPU) physically models and solves partial differential equations (PDEs) with light, at nanosecond speeds.

#OpticalComputing #HPC #LightSolver @Supercomputing

We’re live at @Supercomputing #SC25! Stop by booth 5415 to meet the LightSolver team and learn how our all-optical LPU solves partial differential equations (PDEs) in nanoseconds. This holds great promise for the future of scientific modeling & simulation. #HPC #OpticalComputing

LightSolverCo's tweet image. We’re live at @Supercomputing #SC25! Stop by booth 5415 to meet the LightSolver team and learn how our all-optical LPU solves partial differential equations (PDEs) in nanoseconds. This holds great promise for the future of scientific modeling & simulation. #HPC #OpticalComputing

Our co-founder/CTO Chene Tradonsky was honored to present “Harnessing Light: A Physics-Based Computing Paradigm for Simulating Nature” at the Chesapeake Large-Scale #Analytics Conference. Thank you to all who contributed to an inspiring exchange! #CLSAC #opticalcomputing

LightSolverCo's tweet image. Our co-founder/CTO Chene Tradonsky was honored to present “Harnessing Light: A Physics-Based Computing Paradigm for Simulating Nature” at the Chesapeake Large-Scale #Analytics Conference. Thank you to all who contributed to an inspiring exchange!

#CLSAC #opticalcomputing

When Light Starts To Think: A Journey Into #OpticalComputing by Pooja Kashyap ai.gopubby.com/when-light-sta…

HWillert's tweet image. When Light Starts To Think: A Journey Into #OpticalComputing by Pooja Kashyap ai.gopubby.com/when-light-sta…

We’re excited to be featured in the latest issue of @TheMarker! LightSolver is redefining computation with our laser-based optical computer, solving complex problems 1,000× faster than classical systems. Read the article at: bit.ly/4hp3QiF #OpticalComputing #HPC


Training an LLM whose internal state becomes a printable optical mask. Illuminate this donut and you can reconstruct the semantics and predict the next word. First physical tests happening this week 🔥 #OpticalComputing #Photonics #OpticalGPT #LowPowerAI #SpaceTech #DeepTech

DamirWallener's tweet image. Training an LLM whose internal state becomes a printable optical mask. Illuminate this donut and you can reconstruct the semantics and predict the next word.

First physical tests happening this week 🔥

#OpticalComputing #Photonics #OpticalGPT
#LowPowerAI #SpaceTech #DeepTech

An Editors' Pick via #OPG_JOSA_B: Sub-quadratic scalable approximate linear converter using multi-plane light conversion with low-entropy mode mixers bit.ly/47bHflZ #OpticalComputing #LinearConverter #MultiPlaneLightConversion @UTokyo_News_en

OpticaPubsGroup's tweet image. An Editors' Pick via #OPG_JOSA_B: Sub-quadratic scalable approximate linear converter using multi-plane light conversion with low-entropy mode mixers bit.ly/47bHflZ #OpticalComputing #LinearConverter #MultiPlaneLightConversion @UTokyo_News_en

People in the 1900s: Who needs cars if we have horses already and a supply chain to feed them? People in the 2000s: Who needs optical processors if we have electronic chips already and a $1T supply chain to manufacture them? #OpticalComputing #FutureOfComputing

benjaminwolba's tweet image. People in the 1900s: 

Who needs cars if we have horses already and a supply chain to feed them?

People in the 2000s: 

Who needs optical processors if we have electronic chips already and a $1T supply chain to manufacture them?

#OpticalComputing #FutureOfComputing

🤯 AI Breakthrough! Optical processors are here, using light instead of electricity for faster computation! This could revolutionize AI training speeds. Source: Various research labs. #AI #OpticalComputing


Meet Yoav Blau, our new optical algorithm developer. With a PhD in optical metasurfaces and experience in optics, acoustics, software, and startups, he’ll help expand our laser-based compute platform into new problem spaces. Welcome, Yoav! #Photonics #OpticalComputing

LightSolverCo's tweet image. Meet Yoav Blau, our new optical algorithm developer. With a PhD in optical metasurfaces and experience in optics, acoustics, software, and startups, he’ll help expand our laser-based compute platform into new problem spaces.

Welcome, Yoav! #Photonics #OpticalComputing

Diffractive interconnects: all-optical permutation operation using diffractive networks #neuralnetworks #opticalcomputing degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. Diffractive interconnects: all-optical permutation operation using diffractive networks 

#neuralnetworks
#opticalcomputing

degruyter.com/document/doi/1…

Our scientists have developed photon-avalanching nanoparticles that exhibit a phenomenon called “intrinsic optical bistability,” which could enable optical memory for #OpticalComputing. newscenter.lbl.gov/2025/02/26/new… @molecularfndry @EmoryChanNano

BerkeleyLab's tweet image. Our scientists have developed photon-avalanching nanoparticles that exhibit a phenomenon called “intrinsic optical bistability,” which could enable optical memory for #OpticalComputing. newscenter.lbl.gov/2025/02/26/new… 

@molecularfndry @EmoryChanNano

An Editors’ Pick via #OPG_OL: Dammann gratings-based truly parallel optical matrix multiplication accelerator ow.ly/R96E50OaLp7 #OpticalComputing

OpticaPubsGroup's tweet image. An Editors’ Pick via #OPG_OL: Dammann gratings-based truly parallel optical matrix multiplication accelerator ow.ly/R96E50OaLp7 #OpticalComputing

Via #OPG_Optica: Hyperspectral in-memory computing with optical frequency combs and programmable optical memories bit.ly/3Y4xDoT #OpticalComputing #MachineLearning

OpticaPubsGroup's tweet image. Via #OPG_Optica: Hyperspectral in-memory computing with optical frequency combs and programmable optical memories bit.ly/3Y4xDoT #OpticalComputing #MachineLearning

The next tech race isn’t for faster chips — it’s for light itself. Explore how nations are developing #OpticalComputing to power AI, defense, and communication at the speed of photons. 🔗 idstch.com/geopolitics/op… #Photonics #QuantumTech #FutureComputing #IDST


Neural computing with coherent laser networks Read the article that opens new possibilities for neural computation with coherent laser networks as novel analog processors. #machinelearning #neuralnetworks #opticalcomputing degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. Neural computing with coherent laser networks

Read the article that opens new possibilities for neural computation with coherent laser networks as novel analog processors.

#machinelearning
#neuralnetworks
#opticalcomputing

degruyter.com/document/doi/1…

Scientists from the University of Washington and Princeton University have developed a groundbreaking compact camera designed for computer vision. This innovative prototype uses optics for computing #ComputerVision #AI #OpticalComputing #SelfDriving #DeepLearning #NeuralNetworks

themestimes's tweet image. Scientists from the University of Washington and Princeton University have developed a groundbreaking compact camera designed for computer vision. This innovative prototype uses optics for computing

#ComputerVision #AI #OpticalComputing #SelfDriving #DeepLearning #NeuralNetworks

We're excited to be included in the DeepTech Explained report by @Deloitte Catalyst and Earth & Beyond Ventures. The report showcases 70 emerging startups pushing boundaries across deep tech. Download here: bit.ly/46COHqh #OpticalComputing #HPC #Lasers

earthandbeyond.ventures

DeepTech Explained - Semiconductors | Earth And Beyond

DeepTech Explained - Semiconductors | Earth And Beyond


Via #OPG_OpEx: Spin–orbit optical broadband achromatic spatial differentiation imaging bit.ly/4frP60P #OpticalComputing #ImageProcessing @jnu1906

OpticaPubsGroup's tweet image. Via #OPG_OpEx: Spin–orbit optical broadband achromatic spatial differentiation imaging bit.ly/4frP60P #OpticalComputing #ImageProcessing @jnu1906

Training an LLM whose internal state becomes a printable optical mask. Illuminate this donut and you can reconstruct the semantics and predict the next word. First physical tests happening this week 🔥 #OpticalComputing #Photonics #OpticalGPT #LowPowerAI #SpaceTech #DeepTech

DamirWallener's tweet image. Training an LLM whose internal state becomes a printable optical mask. Illuminate this donut and you can reconstruct the semantics and predict the next word.

First physical tests happening this week 🔥

#OpticalComputing #Photonics #OpticalGPT
#LowPowerAI #SpaceTech #DeepTech

Aalto University researchers develop AI that computes using light waves instead of electricity. Their method executes tensor operations in a single pass of light, enabling calculations to occur naturally & simultaneously. #AI #OpticalComputing #TechBreakthrough


Tsinghua University develops OFE2, an optical AI processor that computes at 12.5 GHz using light instead of electricity. This breakthrough enables AI to literally compute at the speed of light, revolutionizing processing efficiency. #AI #OpticalComputing #TechBreakthrough


#Opticalcomputing is gaining momentum for energy-efficient #AI. New research shows free-space optical processors could shrink to ~1 cm. With new materials and next-gen SLMs, optical hardware is emerging as powerful specialty accelerators. @TechXplore_com: bit.ly/48cG1rm


Photonic AI Coding: Light-speed algorithms run on silicon-photonics chips. Zero electrons, pure photons compute, encrypt & transmit terabits/sec wirelessly. The future is optical. #PhotonAI #LiFi #OpticalComputing


Photonic AI Coding: Light-speed algorithms run on silicon-photonics chips. Zero electrons, pure photons compute, encrypt & transmit terabits/sec wirelessly. The future is optical.  #PhotonAI #LiFi #OpticalComputing (179 chars)


Photonic AI Coding: Light-speed algorithms run on silicon-photonics chips. Zero electrons, pure photons compute, encrypt & transmit terabits/sec wirelessly. The future is optical. #PhotonAI #LiFi #OpticalComputing


Scientists at Aalto University have developed an optical computing chip that uses light to accelerate AI processing—potentially making computations up to 100x faster ... #OpticalComputing #AIinnovation #Photonics #DeepLearning #TechNews aicerts.ai/news/aaltos-op…


Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC. Great conversations, great community — we’re excited for what’s next. #HPC #OpticalComputing

LightSolverCo's tweet image. Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC.

Great conversations, great community — we’re excited for what’s next.

#HPC #OpticalComputing
LightSolverCo's tweet image. Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC.

Great conversations, great community — we’re excited for what’s next.

#HPC #OpticalComputing
LightSolverCo's tweet image. Back from an amazing week at #SC25! Thank you to everyone who visited booth 5415, shared ideas, and explored how our optical LPU brings AI-powered, nanosecond PDE solving to HPC.

Great conversations, great community — we’re excited for what’s next.

#HPC #OpticalComputing

Researchers have demonstrated a groundbreaking way to perform tensor calculations using light, paving the way for ultra-fast, energy-efficient AI processing ow.ly/kuAh50XrUog via @electronicsnews #AI #Photonics #OpticalComputing


📢 📰 AI computations at the speed of light? Researchers at Aalto University made it possible with single-shot tensor computing! 🗞 🔔 #AI #Innovation #OpticalComputing #FutureOfTech 🔄 Share 👍 React 🌐 Visit aravind-r.com #AravindRaghunathan

AI_Aravind's tweet image. 📢 📰 AI computations at the speed of light?  Researchers at Aalto University made it possible with single-shot tensor computing! 🗞 🔔

#AI #Innovation #OpticalComputing #FutureOfTech

 🔄 Share 
 👍 React 
 🌐 Visit aravind-r.com 
 #AravindRaghunathan

We’re live at @Supercomputing #SC25! Stop by booth 5415 to meet the LightSolver team and learn how our all-optical LPU solves partial differential equations (PDEs) in nanoseconds. This holds great promise for the future of scientific modeling & simulation. #HPC #OpticalComputing

LightSolverCo's tweet image. We’re live at @Supercomputing #SC25! Stop by booth 5415 to meet the LightSolver team and learn how our all-optical LPU solves partial differential equations (PDEs) in nanoseconds. This holds great promise for the future of scientific modeling & simulation. #HPC #OpticalComputing

The next tech race isn’t for faster chips — it’s for light itself. Explore how nations are developing #OpticalComputing to power AI, defense, and communication at the speed of photons. 🔗 idstch.com/geopolitics/op… #Photonics #QuantumTech #FutureComputing #IDST


"#opticalcomputing" に一致する結果はありません

We’re live at @Supercomputing #SC25! Stop by booth 5415 to meet the LightSolver team and learn how our all-optical LPU solves partial differential equations (PDEs) in nanoseconds. This holds great promise for the future of scientific modeling & simulation. #HPC #OpticalComputing

LightSolverCo's tweet image. We’re live at @Supercomputing #SC25! Stop by booth 5415 to meet the LightSolver team and learn how our all-optical LPU solves partial differential equations (PDEs) in nanoseconds. This holds great promise for the future of scientific modeling & simulation. #HPC #OpticalComputing

A new optical chip smashes latency records in feature extraction for AI and trading - processing data at the speed of light!⚡️Discover how photonics could outpace electronics: azooptics.com/News.aspx?news… #OpticalComputing #AI #TechInnovation

AZoOptics's tweet image. A new optical chip smashes latency records in feature extraction for AI and trading - processing data at the speed of light!⚡️Discover how photonics could outpace electronics: azooptics.com/News.aspx?news… #OpticalComputing #AI #TechInnovation

An Editors' Pick via #OPG_JOSA_B: Sub-quadratic scalable approximate linear converter using multi-plane light conversion with low-entropy mode mixers bit.ly/47bHflZ #OpticalComputing #LinearConverter #MultiPlaneLightConversion @UTokyo_News_en

OpticaPubsGroup's tweet image. An Editors' Pick via #OPG_JOSA_B: Sub-quadratic scalable approximate linear converter using multi-plane light conversion with low-entropy mode mixers bit.ly/47bHflZ #OpticalComputing #LinearConverter #MultiPlaneLightConversion @UTokyo_News_en

Fully Homomorphic Encryption (FHE) allows computations to be performed on encrypted data. Optalysys' Echip technology can provide an order-of-magnitude acceleration in FHE calculations. 🤝 Apply to join our FHE Beta program: optalysys.com/fhe-beta-progr… #opticalcomputing #AI

Optalysys's tweet image. Fully Homomorphic Encryption (FHE) allows computations to be performed on encrypted data.

Optalysys' Echip technology can provide an order-of-magnitude acceleration in FHE calculations.

🤝 Apply to join our FHE Beta program:  optalysys.com/fhe-beta-progr… 

#opticalcomputing #AI

An Editors’ Pick via #OPG_OL: Dammann gratings-based truly parallel optical matrix multiplication accelerator ow.ly/R96E50OaLp7 #OpticalComputing

OpticaPubsGroup's tweet image. An Editors’ Pick via #OPG_OL: Dammann gratings-based truly parallel optical matrix multiplication accelerator ow.ly/R96E50OaLp7 #OpticalComputing

By forcing light to go through a smaller gap than ever before, @imperialcollege researchers have paved the way for computers based on light instead of electronics: ow.ly/z6nW30h0gvo #OpticalComputing #Tech

LBNLcs's tweet image. By forcing light to go through a smaller gap than ever before, @imperialcollege  researchers have paved the way for computers based on light instead of electronics: ow.ly/z6nW30h0gvo #OpticalComputing #Tech

Diffractive interconnects: all-optical permutation operation using diffractive networks #neuralnetworks #opticalcomputing degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. Diffractive interconnects: all-optical permutation operation using diffractive networks 

#neuralnetworks
#opticalcomputing

degruyter.com/document/doi/1…

Via #OPG_Optica: Hyperspectral in-memory computing with optical frequency combs and programmable optical memories bit.ly/3Y4xDoT #OpticalComputing #MachineLearning

OpticaPubsGroup's tweet image. Via #OPG_Optica: Hyperspectral in-memory computing with optical frequency combs and programmable optical memories bit.ly/3Y4xDoT #OpticalComputing #MachineLearning

NEW ARTICLE: Encrypted search using fully homomorphic encryption We explore implementing an encrypted search operation using @zama_fhe Concrete Boolean library and running it with the aid of optical Fourier transform hardware: optalysys.com/encrypted-sear… #AI #opticalcomputing

Optalysys's tweet image. NEW ARTICLE: Encrypted search using fully homomorphic encryption

We explore implementing an encrypted search operation using @zama_fhe Concrete Boolean library and running it with the aid of optical Fourier transform hardware:

optalysys.com/encrypted-sear…

#AI #opticalcomputing

Superfast Fluorescence Sets New Speed Record @DukeEngineering bit.ly/1UyNqDb @AFOSRYIP #OpticalComputing

AFOSR's tweet image. Superfast Fluorescence Sets New Speed Record @DukeEngineering bit.ly/1UyNqDb @AFOSRYIP #OpticalComputing

NEW ARTICLE: Optical computing for Computational Fluid Dynamics In this article we aim to provide an illustration of where the field is now, so we can later talk in detail where it might end up in the future. Read it here: bit.ly/3kzTijc #AI #opticalcomputing #CFD

Optalysys's tweet image. NEW ARTICLE: Optical computing for Computational Fluid Dynamics

In this article we aim to provide an illustration of where the field is now, so we can later talk in detail where it might end up in the future.

Read it here: bit.ly/3kzTijc

#AI #opticalcomputing #CFD

Via #OPG_OpEx: Spin–orbit optical broadband achromatic spatial differentiation imaging bit.ly/4frP60P #OpticalComputing #ImageProcessing @jnu1906

OpticaPubsGroup's tweet image. Via #OPG_OpEx: Spin–orbit optical broadband achromatic spatial differentiation imaging bit.ly/4frP60P #OpticalComputing #ImageProcessing @jnu1906

Via #OPG_OMEx: Optical dendrites for spatio-temporal computing with few-mode fibers [Invited] ow.ly/B6S550JgChn #OpticalComputing #MultimodeFibers @IFISC_mallorca

OpticaPubsGroup's tweet image. Via #OPG_OMEx: Optical dendrites for spatio-temporal computing with few-mode fibers [Invited] ow.ly/B6S550JgChn #OpticalComputing #MultimodeFibers  @IFISC_mallorca

Via #OPG_Optica: Realization of an integrated coherent photonic platform for scalable matrix operations ow.ly/kO3f50Rxv4Q #InformationProcessing #OpticalComputing @PittEngineering

OpticaPubsGroup's tweet image. Via #OPG_Optica: Realization of an integrated coherent photonic platform for scalable matrix operations ow.ly/kO3f50Rxv4Q #InformationProcessing #OpticalComputing @PittEngineering

Our scientists have developed photon-avalanching nanoparticles that exhibit a phenomenon called “intrinsic optical bistability,” which could enable optical memory for #OpticalComputing. newscenter.lbl.gov/2025/02/26/new… @molecularfndry @EmoryChanNano

BerkeleyLab's tweet image. Our scientists have developed photon-avalanching nanoparticles that exhibit a phenomenon called “intrinsic optical bistability,” which could enable optical memory for #OpticalComputing. newscenter.lbl.gov/2025/02/26/new… 

@molecularfndry @EmoryChanNano

An Editors' Pick via #OPG_OL: Total absorption and coherent perfect absorption in metal–dielectric–metal resonators integrated into a slab waveguide ow.ly/jm9250KAfSb #PhotonicCrystals #OpticalComputing

OpticaPubsGroup's tweet image. An Editors' Pick via #OPG_OL: Total absorption and coherent perfect absorption in metal–dielectric–metal resonators integrated into a slab waveguide ow.ly/jm9250KAfSb #PhotonicCrystals #OpticalComputing

Neural computing with coherent laser networks Read the article that opens new possibilities for neural computation with coherent laser networks as novel analog processors. #machinelearning #neuralnetworks #opticalcomputing degruyter.com/document/doi/1…

Nanophotonics_J's tweet image. Neural computing with coherent laser networks

Read the article that opens new possibilities for neural computation with coherent laser networks as novel analog processors.

#machinelearning
#neuralnetworks
#opticalcomputing

degruyter.com/document/doi/1…

NEW ARTICLE: Optalysys: What we do (And why we do it) Conventional computing is rapidly approaching the physical limits of what can be achieved with silicon electronics... Continue reading: optalysys.com/what-we-do-and… #optalysys #opticalcomputing #AI #fouriertransform

Optalysys's tweet image. NEW ARTICLE: Optalysys: What we do (And why we do it)

Conventional computing is rapidly approaching the physical limits of what can be achieved with silicon electronics...

Continue reading: optalysys.com/what-we-do-and…

#optalysys #opticalcomputing #AI #fouriertransform

Loading...

Something went wrong.


Something went wrong.


United States Trends