An Optical Platform for Fabricating and Studying Nanostructures Using ultra-fast laser beams, a team from the Irradiated Solids Laboratory (LSI*) has designed an experiment that allows both the creation of nanometric cavities in metal films and their study using several advanced microscopy techniques. The results have been published in the journal Physical Review Letters (PRL). https://lnkd.in/e63A2kfz #StatNano #NBIC #Nanotechnology #UltrafastLasers #Nanostructures #MetalFilms #OpticalPlatform #PRL #Innovation
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Compact Powerhouse for Precision Mid-IR Applications ⚡ Thorlabs’ D-Mount Distributed Feedback Quantum Cascade Lasers (QCLs) are engineered for precision and performance in the mid-infrared range. With single-wavelength output, high thermal conductivity, and tunable frequency control, these compact lasers deliver stable and reliable operation—ideal for chemical sensing, sample analysis, and advanced IR applications. Engineered for OEM integration, each D-mount QCL combines efficiency, durability, and compact design—helping researchers and engineers push the limits of mid-IR photonics. Looking to integrate Thorlabs D-Mount QCLs into your next system? Click on the following link to learn more : https://lnkd.in/da6Y7-eD #QuantumCascadeLaser #QCL #MidIR #Photonics #InfraredTechnology #ChemicalSensing #Spectroscopy #OpticalEngineering #LaserScience
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Atomic Force Microscopy (AFM) is an advanced imaging technique that has revolutionized the study of surfaces at the nanoscale. By employing a sharp probe that scans the surface of a sample, AFM allows scientists to visualize and measure the topography and properties of materials with remarkable precision, often down to the atomic level. According to Kings Research, the global atomic force microscopy market is estimated to hit a valuation of USD 1,048.9 million by 2031. This blog discusses the top 10 companies involved in this niche based on their innovative product offerings and global presence. Top 10 Atomic Force Microscopy Companies Paving the World in 2025 Park Systems Hitachi High-Tech Corporation Nanonics Imaging Ltd Bruker Keysight Technologies Oxford Instruments plc Nanosurf HORIBA, Ltd. NT-MDT Spectrum Instruments Semilab Zrt Inc. Explore how these pioneers are revolutionizing nanoscale imaging and precision research in our latest Global Atomic Force Microscopy Market Report. 🔬✨ https://lnkd.in/dh5AKFY9 #AtomicForceMicroscopy #Nanotechnology #MicroscopyInnovation #MaterialScience #NanoResearch #ScientificInstruments #AFMTechnology #KingsResearch
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🔬 2025 has been a year of pushing the limits in microscopy. We’ve had the opportunity to work on several fascinating projects: One customer needed a specialized microscope capable of detecting single molecules within cells, combining ultra-high resolution with large fields of view. Another project was designing a microscope that was incredibly compact and cost-efficient. Another customer needed to add far-field imaging capability to their microscope; where in addition to imaging the sample itself, one images the light emitting from the sample after it has propagated large distances. Speaking of far-field, we have also been busy working on laser-related projects and will be happy to highlight these soon. Each project brought unique samples and technical goals, and we’ve enjoyed solving every one of them at Arcsecond Labs. #Microscopy #Optics #Lasers #Farfield #Photonics #Engineering #Innovation #ProductDesign #ArcsecondLabsLLC
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cosine continues to push the boundaries of X-ray imaging and exploration with the development of the Silicon Laue Component (#SiLC), a new type of focusing element capable of concentrating hard X-rays and soft gamma-rays. 💡 Building on the proven Silicon Pore Optics (#SPO) technology, SiLCs take a significant step forward by using Bragg diffraction within the crystalline bulk of silicon. This breakthrough makes it possible to apply mass-production techniques to fabricate extremely precise high-energy focusing elements, unlocking new opportunities for next-generation space telescopes and medical applications such as radiotherapy. 🔗 Read more about it on our website: https://lnkd.in/eDcXHYAH #XrayAstronomy #Innovation #Optics #SpaceTechnology #SPO #Xray
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Our Ultrafast Lasers (ST-ACDxW) solutions offer high-speed measurement capabilities, specializing in Customized Spectroscopy and Time-Domain Spectroscopy (TDS). These systems provide sub-micron positioning (<1 um) and are fully integrated with advanced components like Cryostats, Electromagnets, and At optics for cutting-edge Terahertz/Photonics/Optics research. #UltrafastLasers #Terahertz #Photonics #TimeDomainSpectroscopy #PrecisionControl
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We have jointly published a paper with Hochschule München University of Applied Sciences in Laser Photonics Review that investigates the formation of laser-induced periodic surface structures (LIPSS). FusionScope® was used to provide quantitative, high-resolution measurements of the pulse-to-pulse nanomorphology that governs LIPSS formation. The AFM captured surface roughness, height distributions (including non-Gaussian features such as nanopillars on aluminum), correlation lengths, and slope steepness, which cannot be resolved through scanning electron microscopy (SEM) alone. These AFM-derived surface profiles were also used as input geometries for finite-difference time-domain (FDTD) simulations, directly linking experimentally measured morphologies to local optical absorption and thereby demonstrating how initial nanostructures determine whether LIPSS can develop. Read the full article: https://lnkd.in/gXX5DQiN. Learn more about FusionScope: https://lnkd.in/g6bn4et3. #LIPSS #AFM #microscopy
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#EditorsChoice 📖 Route to Chaos in a Unidirectional Ring of Three Diffusively Coupled Erbium-Doped Fiber Lasers ✍ By Jose Octavio Esqueda de la Torre, Juan Hugo García López, RIDER JAIMES REATEGUI, GUILLERMO HUERTA CUELLAR, Vicente Aboites and Alexander N. Pisarchik 🏘️ From Universidad de Guadalajara, Lasers Laboratory, Optical Research Center, Loma del Bosque and Universidad Politécnica de Madrid 👉 https://lnkd.in/ddAjuMx4 ✨ We numerically investigate the dynamics of a ring consisting of three unidirectionally coupled Erbium-Doped Fiber Lasers (EDLFs) without external pump modulation. The study focuses on the system behavior as the coupling strength is varied, employing a six-dimensional mathematical model that includes three variables for laser intensities and three variables for population inversions of all lasers. Our primary objective is to understand the system evolution towards chaos from a stable equilibrium in the ring, considering the impact of increasing coupling strength. #Photonics #Optics #Laser #EDLFs
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The Frontiers in Optics and Laser Science (FiO+LS) conference opens today in Denver, Colorado (28th–29th October), and Radiantis is proud to be exhibiting in collaboration with our partners Covesion Ltd. and AdvR Inc. FiO+LS is a premier international forum for the optics and photonics community, uniting researchers and industry to advance the frontiers of laser science, quantum technologies, non-linear optics, and optical materials. Together with Covesion and AdvR, we will be presenting cutting-edge solutions in wavelength conversion, non-linear optical materials, and precision laser instrumentation, addressing the demanding requirements of today’s photonics research. We look forward to engaging with colleagues, discussing the latest scientific developments, and exploring new opportunities for collaboration. Learn more: https://loom.ly/-Wy1RHU #Radiantis #Covesion #AdvR #Photonics #Optics #LaserScience
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Capture ultra-fast phenomena with precision. ⚡ The SC-20 Streak Camera System offers sub-nanosecond temporal resolution and a large 35 mm × 4 mm detection area—making it a powerful tool for time-resolved imaging in plasma physics, detonics, and other high-speed optical research. With flexible input optics, interchangeable slits, and optional image intensifiers, the SC-20 delivers exceptional adaptability and performance for advanced experimental setups. Looking to integrate the SC-20 Streak Camera System into your research? Click on the following link to learn more: https://lnkd.in/d6XezvDk Optronis GmbH #StreakCamera #HighSpeedImaging #PlasmaPhysics #DetonicsResearch #OpticalMeasurement #ScientificInstrumentation #LaserScience #TimeResolvedImaging #Photonics #ResearchTools
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Field Emission Scanning Electron Microscopy (FESEM) is a high-resolution imaging technique used to analyze the surface morphology and microstructure of materials at the nanometer to micrometer scale. It is a specialized form of Scanning Electron Microscopy (SEM) that utilizes a field emission electron source, enabling significantly improved resolution, brightness, and depth of field compared to conventional thermionic SEM. #FESEM #testing #nanoparticles #nanotechnology #research #carlzeiss #characterization
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